- 1 dimensional nanotubes MO25.204
- 2D crystals WE51.203
- 2D templates TU36.107
- 3-D co-culture MO81.725
- 3D cell culture MO81.217
- 3D cultivation TU41.603
- 3D imaging MO21.703
- 3D WE41.606, WE51.603, WE53.101
- 5-Aminolevulinic acid WE80.103
- 11 vessel occlusion rat model MO81.127
- AAO TU35.503
- ab-initio calculation MO82.313
- ab-initio TU41.802
- ablation TU35.413
- ABO WE80.214
- absorption MO81.919, TU35.814
- AC magnetic field TU36.001
- AC voltammetry MO81.902
- ac-corrosion MO81.902
- accelerated aging TU36.012
- accelerometer TU36.319
- accumulation WE80.113
- ACC TU36.314
- acetyl cholinesterase TU25.201
- acetylcholine esterase MO81.306, MO81.307
- acetylcholine TU35.912
- ACE WE81.608
- acoustic streaming WE51.602
- acoustic TU27.301, TU36.409
- actin TU41.101
- activated carbon electrode material WE57.105
- activated carbon TH28.202, WE82.205
- activated carbón TU35.415
- activation fluidisation TU28.206, WE28.403
- active rehabilitation robot WE28.302
- active species MO81.515
- active temperate control TU50.118
- actuator TU36.202, TU36.317, TU36.403
- acustics TU13.101
- acutator WE43.101
- acylglycerides MO57.503
- adaptive real-time signal processing WE48.104
- adaptive subband filtering WE23.104
- adding function MO31.101
- adhesion TU35.605, WE41.404, WE80.509, WE80.516
- adhesives TU23.103, WE48.205
- adiabatic compressibility TU35.122
- adsorber TU35.834
- adsorption capability TU36.022
- adsorption isotherms WE81.706
- adsorption MO81.804
- Adsorption TH11.102
- adsorption TH21.302, TU35.601, TU41.202, WE80.313, WE80.316, WE81.801, WE81.911, WE81.915
- advanced materials TU50.128, TU50.142, TU50.144
- advanced oxidation TU28.106
- advanced wire product WE80.509
- aerodynamic flow control TU28.207
- aerogels MO81.710
- aerosol templating WE21.305
- aerosol TU28.206, WE21.302, WE28.403
- aerospace parts TH41.202
- affinity templates TU21.501
- affordable MO27.303
- AFM MO25.103, MO81.204, MO81.902, MO81.914, MO81.915, TH45.101, TU21.504, TU35.415, TU35.510, TU35.511, TU35.605, TU35.822, TU35.904, TU35.910, WE21.602, WE21.704, WE41.701, WE41.702, WE41.703, WE42.104, WE51.706, WE80.218, WE80.516, WE80.519
- Ag nanoaggregates WE51.202
- age-related macular degeneration WE48.204
- agglomeration kinetics WE28.105
- aggregate strength TU41.201
- aggregation rate WE80.315
- aggregation TU35.802, TU41.201
- agitator bead mills MO82.308
- agriculture WE28.104
- Ag MO81.721
- air circulation WE82.211
- air conditioning TU50.129
- air filter WE81.721
- air filtration TU35.905
- air pollutants TH21.303
- air pollution control WE28.103
- air quality WE81.711
- albumin TU35.122
- alcohol sensors MO81.808
- algae TH28.306, TU28.205
- algal dose WE81.701
- AlGaN/GaN EGFET TU25.201
- AlGaN/GaN HEMT TU36.313
- alginate biopolymers TU50.170
- algorithms TH28.308
- Algorithm WE48.107
- aligned MO31.103
- alkyl phenol ethoxylates WE80.305
- all inorganic WE81.102
- allergy WE81.711
- alliance TU26.106
- alloy MO21.702, WE80.412
- alpha-Fe2O3 nanowires WE80.405
- alpha-Fe WE51.201
- alpha WE81.505
- alphs-lactalbumin WE80.311
- ALS TU45.102
- alternating current TH25.304
- alternative energy WE82.103
- alternative fuels WE81.813
- alumina MO81.609, TU35.820, TU35.909
- aluminium trihydroxide MO82.212
- aluminum TU27.503, WE80.505
- AlwaysReady WE57.107
- amine WE80.301
- amino acids TU35.915
- Aminosilane MO81.202
- ammonia WE28.104, WE81.608
- amorphization WE81.805
- amorphous carbon WE80.507
- amorphous TU31.203, WE41.703
- amphiphiles TU35.122
- amphiphilic-cyclodextrin TU35.116
- amphiphilic TU35.520, TU36.003, WE28.404
- amplification WE25.203
- amyloid peptides MO81.516
- anaerobic digestion WE81.807
- Analog TU24.104
- analysis TH13.104, TU41.703
- analytical model TU36.316
- analytics WE82.209
- anastrozole TU35.113
- anatase MO27.301
- and computer chips TH28.203
- and environmentally friendly process to provide significant logarithmic reduction in microbial counts in packaged products. Besides the food industry WE28.308
- and sterilizing antimicrobial treatment of product inside the package. Once treated the product is protected by the package from external contamination hazards. This technology will serve many different markets seeking a simple WE28.308
- and the government WE28.308
- angiogenesis TH28.303
- anhydrous TU36.213
- annealing MO81.126
- anodic aluminum oxide MO81.106, WE80.513
- anodization TU25.104, WE80.504
- anomalous absorption MO81.702
- antenna system WE48.108
- anti-angiogenic MO81.519
- Anti-Mouse protein MO81.202
- anti-ultraviolet TU36.016
- antibacterial products WE28.305
- antibacterial MO82.211, TH28.302, TU35.832
- antibiotic-resistance TH15.104
- antibiotics WE48.208
- antibodies TU35.301
- antibody TH15.205, WE80.512
- antigens WE80.214
- antimicrobial MO31.201, TU35.829, WE11.301
- antioxidant TH45.103
- antitumor activity TU35.108
- antivirals TH25.202, TH28.305
- apc gene MO81.510
- API nanoparticles MO82.210
- apoptosis MO81.506, MO81.714, MO81.721
- applications MO82.211
- applied cryptography WE48.105
- aptamers MO81.806
- aquamaker WE81.905
- aqueous phase reforming MO37.201
- arc discharge TU35.409
- arc synthesis in liquid phase MO82.127
- arc synthesis MO82.126
- architecture MO82.117, TU26.107
- arc TU35.413
- Arizona development TU50.107
- army WE53.102
- array TU21.503, WE51.802
- arsenic detection TH11.302
- arsenic TU36.210
- artefact compensation WE48.104
- arterialized blood TU28.304
- artificial bone WE48.203
- artificial intelligence MO81.114
- artificial limbs WE28.306
- artificial nose WE48.202
- artificial organ MO81.729
- aseptic filling TU31.503
- aseptic packaging TU31.503
- ASIC TH23.102, WE81.403
- assembly TU35.306, TU41.204, WE42.103, WE53.101, WE80.314
- assessment WE82.107
- assisted assembly TH12.101
- assistive technologies WE28.302
- asthma WE81.711
- Asthma WE82.211
- asymmetric double-gate TU30.403, TU44.102
- asymmetric gate stack WE80.606
- asymmetric inertial migration WE28.105
- at various stages of product distribution and storage WE28.308
- ataytic TH11.303
- athletes and military recruits WE28.307
- ATLAS TU24.102, TU36.307, WE80.602
- atmospheric chemistry MO82.123
- atmospheric WE81.905
- Atomic Force Microscopy (AFM) MO82.303
- atomic force microscopy TH45.101
- Atomic Force Microscopy TU35.510, TU35.511
- atomic force microscopy WE41.402
- Atomic force microscopy WE80.508
- atomic-scale WE81.810
- ATP TU11.101
- Atrazine TU35.618
- ATRP TU21.202, TU36.005
- attached below the neck and in the lumbar region could provide data on the spinal cord and two similar sensors attached to the tibia or femur could work for the extremities. Given the growing trend towards increased physical activity in all age groups WE28.307
- attachment TU25.204
- attinity biosensors MO81.130
- Au nanoparticles TU35.201
- Au nanoparticle WE80.510
- Australian development TU50.109
- autodisplay TH28.307
- Autodock MO81.128
- automation MO21.703, TH25.102
- automobile WE81.721
- automotive lubricant additive WE28.405
- automotive TU28.201
- awards MO27.402
- azocompounds TU35.521
- Bacillus anthracis spores MO81.126
- bacillus spores MO81.203
- bacteria detection TH15.104
- bacterial delivery system TU35.104
- bacteria MO25.102, MO81.110, TH15.205, TH21.302, TH22.104, TH28.306, TU28.205, TU36.115
- bacteriophage immobilization TU35.305
- bacteriophage TU35.311
- bacterophage MO81.610
- balance WE81.403
- ballistic/quasi-ballistic transport WE44.102
- Ballistic TU35.404
- ballistic WE80.603
- band gap TU36.208
- band-stop filter WE80.410
- Barium titanate TU36.114
- barnacle WE82.303
- base resistance WE24.101
- base-growth mechanism TU35.408
- base-stacking interactions TU35.602
- BASF TU21.101
- basic-building-block WE24.103
- basic TU50.166
- Basque development TU50.116
- batteries TU28.104, TU28.201, TU35.805, WE80.515
- battery WE51.402, WE57.107, WE81.403, WE81.507
- bead milling MO82.210
- bead nanoparticles TH25.102
- BEM TH13.101
- benzophenone TU36.016
- best practice MO57.303
- beta-lactoglobulin WE80.311
- beta-stabilizing element WE80.502
- beta WE81.505
- BEV WE81.403
- Bi-2212 thin films TU35.522
- bi-directional WE43.101
- bi-phasic digestion WE81.615
- bi-stable TU36.206
- bifurcation WE81.802
- bilayers MO25.202
- bilayer TU21.503, TU36.108
- bimaterial structure TU36.205
- binary crystal TU36.107
- binding energy WE80.519
- bio detection MO81.109
- bio mass MO57.504
- bio materials WE51.402
- bio nano integration TU26.107
- bio nano materials MO81.206
- bio sensing TH28.102
- bio sensor MO25.105
- bio-absorbable WE48.203
- bio-distribution TH45.105
- bio-fuels WE81.614
- bio-nanocomplex WE21.402
- bio-refineries WE81.614
- bio-sensing WE48.202
- bio-sensors WE21.401
- bio-sensor MO81.211
- bioaccumulation MO81.713
- biocatalysts MO81.210
- bioceramics WE80.115
- biochemicals WE81.601
- biocompatability TU25.201
- biocompatibility WE80.504
- biocompatible MO81.523
- biocomposites MO37.303, WE81.722
- bioconjugates TH28.304
- bioconjugate MO81.312
- bioconversion MO81.218
- biodegradable polymersomes TU21.201
- biodegradable polymer MO81.702
- biodetection MO81.522, MO81.606
- biodiesel WE81.603, WE81.607, WE81.623
- biodisribution MO81.726
- biodiversity TU35.509
- bioelectrochemical TH11.303
- bioenergy MO27.203
- bioethanol MO37.204, MO57.502, WE28.207
- biofilm MO81.201, WE28.106
- biofouling WE28.106
- biofuel policy model WE81.606
- biofuels TH28.306, TU27.602, TU28.205, WE81.601, WE81.605, WE81.607, WE81.616
- biofuel MO27.201, WE81.619, WE81.621, WE81.623
- biofunctionalization MO81.508, TU25.202
- biogasoline MO37.201
- biogas WE81.206, WE81.617, WE81.807, WE82.105
- biohydrogen WE81.612
- bioimaging MO81.208, MO81.522, MO82.412, TU35.827
- biointerface TU30.303
- biological activity MO81.502
- biological applications WE80.213
- biological barriers TU35.114
- biological gels MO81.217
- biological nanoparticles MO81.207
- bioluminescence TU35.121
- biomarker screening TU25.206
- biomarkers MO35.103
- biomarker MO81.312, MO81.316, MO81.607, MO81.611, MO82.205
- biomass energy systems WE81.616
- biomass ignition promoter diesel alcohol WE81.611
- biomass MO27.201, MO37.402, TU27.504, TU27.506, TU31.301, TU47.305, WE81.704
- biomaterials MO81.217, TH28.301
- biomaterial MO81.101
- biomedical application MO81.904
- biomedical engineering TH28.301, TU28.305, WE28.401
- biomembrane vesicles MO81.523
- biomembrane TU21.503
- BioMEMS MO81.601, TU36.317
- biometric systems MO81.114
- biometrics TH28.101
- biomimetic TU25.101
- biomolecular detection MO81.130
- biomolecular WE42.102
- biomolecules MO82.310
- biomolecule MO81.107
- biopesticides WE81.716
- bioplastics WE81.601
- biopolymerization TU41.101
- bioprocess monitoring TH25.102
- bioreactor TU47.302, WE81.705, WE81.906
- biorecognition interfaces WE45.204
- biorefinery MO37.202
- Biosensing MO25.103
- biosensing WE28.306, WE53.103
- biosensors MO81.305, MO81.806, TU25.201, WE45.204
- biosensor MO25.101, MO81.119, MO81.126, MO81.129, MO81.608, MO81.612, TH15.101, TH15.102, TU25.202, TU25.203, WE28.304, WE80.311, WE80.512
- biosorption WE81.701
- biotechnology TH28.306, TU28.205, TU50.117, WE28.401, WE81.605
- biotech TU48.401, TU48.402, TU48.403, TU48.404, TU48.405, TU48.406, TU49.401, TU49.402, TU49.403, TU49.404, TU49.405, WE57.801, WE57.803, WE57.804
- biotemplated synthesis TU35.313
- biotin binding polypeptide TU35.305
- biotoxins WE81.718
- bio TU36.405
- bipolar FET theory WE24.102
- bipolar field-effect transistor WE24.103
- bipolar transistors TU36.315
- bipolar transistor WE24.101
- bismuth triiodide sheets TU36.107
- bistable TU36.321
- Black formula WE14.101
- black mold TU27.302
- black silicon TU23.101
- blades TH28.205
- blindness WE48.204
- block copolymers TU21.202, TU21.204, TU36.019, TU41.102
- block copolymer MO31.103, TU36.005
- block copolypeptide materials TU11.102
- block-copolymer WE21.702
- blocking WE42.203
- blood brain barrier TU35.103
- blood cell MO81.602
- blood collector TU28.304
- blood flow WE80.114
- blood type WE80.214
- blue shift MO82.105, MO82.113
- BMS WE81.403
- boat WE81.717
- bolometer TH42.102
- Boltzmann Transport Equation WE52.201
- bond dissociation TU35.612
- bonding of silicon to ceramics TU23.101
- bonding TH25.303
- bone diseases MO81.513
- bone substitute MO81.214
- bone TU35.314
- boron hydride TU35.902
- boronic acid TU35.407
- bottom-up MO81.115
- boundary slip WE80.204
- brain tumors TH21.303, TU15.102
- branched nanowires TU36.107
- brand protection WE28.402
- Brazil development TU50.169
- breakage mechanism TU41.201
- breakdown WE80.608
- breast cancer TU35.308, WE48.207
- brine WE81.911
- broken symmetry MO81.215
- Brookhaven TU26.107
- Brownian dynamics TU35.417
- BSIM4 WE14.103
- BSIM WE80.608
- bubble array WE80.220
- buckling analysis MO81.601
- buffer layer WE28.101
- building commissioning WE82.209
- building science MO27.304
- building security TU35.918
- building technologies WE82.210
- buildings MO27.302, MO37.303, WE82.204
- building TU35.918
- bulk MO81.309
- bundling MO81.126
- buried cavity TU36.110
- business processes WE82.110
- business WE82.105
- by detecting the ultrasound waves created during the initiation and growth of microcracks in the bone. Two sensors WE28.307
- C. elegans MO81.506
- CAD/CAE TH13.104
- cake filtration WE81.713
- calcium ion channel TH15.304
- calcium MO25.205, TU35.827
- California research TU50.195
- camptothecin WE80.120
- can be contaminated with pathogens or other microbial contamination during handling or processing prior to being packaged. Our proprietary process treats packaged product with ozone created in the package using ultraviolet energy radiated in the package. The ultraviolet energy also provides antimicrobial treatment to the product in the package. This combined treatment of product in our customizable packaging and package storage process provides sanitizing WE28.308
- Canada nanomanufacturing TU50.201
- Canada research TU50.200
- cancer diagnostics MO35.101, WE80.101, WE80.108
- cancer nanotechnology TU50.160
- cancer therapeutics TH45.103
- cancer MO31.202, MO35.103, MO81.316, MO81.514, MO81.611, TH28.303, TU28.303, TU35.107, TU35.205, WE28.301, WE48.206, WE48.207, WE55.203, WE80.107, WE80.119, WE80.123
- cantilever TU36.404, TU36.409, WE43.101
- capacitance detection MO25.104
- capacitances TU30.401
- capacitance MO81.110, TH15.103, TU36.322
- capacitive sensor MO81.120
- capacitive switch WE23.203
- capacitors TH28.105, WE57.105
- capacitor WE57.103
- capilary WE80.208
- capillary force TU35.605
- capillary instability WE41.304
- capillary WE80.114
- capsaicin WE80.318
- capsid WE21.403
- capture WE81.610, WE81.703
- carbob nanotubes WE41.802
- carbohydrate TU28.303
- carbon aerogel -supported Pt WE81.814
- carbon based nanomaterials MO82.123
- carbon black TU35.410
- carbon capture MO27.202, WE57.403
- carbon emissions MO57.401, WE82.106
- carbon fibres coatings WE28.405
- carbon monoxide TU35.820
- carbon nano tube MO81.814
- carbon nanofibers MO81.815
- Carbon Nanofibers TU35.414
- carbon nanofiber TH41.105
- carbon nanoparticles TU35.815
- carbon nanopipes MO81.512
- carbon nanoribbon WE52.201
- carbon nanospheres MO81.805
- carbon nanostructures MO82.127, TU36.102
- carbon nanotube (CNT) MO81.721
- carbon nanotube deposition TH28.203
- carbon nanotube films MO81.813
- carbon nanotube membrane MO81.707
- carbon nanotube printer TH22.104
- carbon nanotubes (CNT) MO81.404
- carbon nanotubes MO31.801, MO31.804, MO81.209, MO81.509, MO81.510, MO81.704, MO81.717, MO81.802, MO81.804, MO81.806, MO81.811, TH15.303, TH22.103, TH45.104, TU15.104, TU28.101, TU35.119, TU35.401, TU35.403, TU35.406, TU35.407, TU36.007, TU36.015, TU41.801, WE21.502, WE21.802, WE51.301, WE51.803, WE80.118, WE80.308, WE81.915
- carbon nanotube MO25.105, MO81.504, MO81.807, MO81.812, MO82.206, TU21.505, TU35.416, TU35.604, TU35.616, TU35.706, TU41.802, TU41.804, TU41.805, WE22.103, WE41.801, WE41.803, WE51.802, WE80.311, WE81.909
- carbon nanotubs TU35.507
- carbon-nanotubes TU35.411
- carbon-nuetral WE81.205
- carbonaceous material TH28.202
- carbonation MO82.212
- carbon TH42.104, TU35.404, TU35.831, WE41.606, WE51.603
- carborane TU35.902
- carboylic groups TU35.505
- cardiac biomarkers TH25.104
- cardiac myocytes TH45.204
- cardiomyocyte TU35.620
- cardiomyopathy MO81.401
- cardoon MO27.201
- carrageenan MO81.212
- carrier transport WE52.201
- carrier-based model TU36.308
- cartilage MO81.507
- Casimir TU36.204
- catalysis MO57.503, MO82.202, TU28.206, TU35.831, WE28.403
- catalyst design TU50.139
- catalyst seed MO81.803
- catalyst-containing carbon TU36.118
- catalysts TU35.410, WE21.303, WE28.405
- catalyst MO82.206, TU28.206, WE28.403, WE81.504, WE81.801
- catalytic exothermic reactions TU35.411
- catalytic nanoparticles WE57.402
- catalytic supporter WE21.305
- cathode material TU28.202
- cathode WE81.809
- cathodic protection MO81.902
- cationic lipids TU35.206
- caviation rheology MO81.119
- CCVD WE41.403, WE80.509
- CD19 TU35.120
- CD36 WE48.204
- CDM WE81.610, WE81.703
- cDNA microarray MO81.503
- CdSxSe1-x WE80.413
- CD TU35.822
- cell adhesion MO81.118, TH45.102
- cell cultures TU41.602
- cell dielectric property TU36.210
- cell division MO81.728
- cell signaling MO81.727, MO81.729
- cell viability MO81.512
- cell-based delivery MO81.313
- cell-based screening WE28.306
- cell-surface signaling TU41.502
- cell-virus interactions TU35.312
- CellChip TU41.603
- cells MO81.728, WE80.111
- cellular uptake TU35.828
- cellular TU11.101
- Cellular WE48.107
- cellulose binding module TU35.305
- cellulose crystals WE80.319
- cellulose derivatives MO81.708
- cellulose media TU35.905
- cellulose nanocrystals WE41.705
- cellulose MO31.703, WE28.207, WE80.309, WE81.621
- cellulosic ethanol MO37.202
- cellulosic MO37.203
- cell MO81.504, MO81.602, WE57.107
- central nervous system regeneration MO25.203
- Centri-Separator TU35.835
- centrifugal microfluidics TH25.103
- ceramic microarrays WE80.215
- ceramics WE51.403
- cerebral palsy WE28.303
- ceria TU35.820
- cerium oxide TH45.103, TU41.202
- CERs WE81.610, WE81.703
- certification WE82.115
- CFD simulation WE80.206
- CFD MO26.201, WE51.602, WE51.604, WE57.401, WE80.212, WE81.806
- chalcogenide MO82.111, TU25.202
- characterization methods TU36.316
- characterization MO81.730, MO81.920, TU35.124, TU35.514, TU36.318
- charge WE81.403
- cheese whey MO27.404
- chelotropic traps MO82.412
- chemi-sorption TU35.519
- chemical dosing TU41.602
- chemical mechanical polishing WE43.105
- chemical sensors TU35.519
- chemical sensor MO81.807
- chemical solution TU36.107
- chemical storage WE28.201
- chemical vapor deposition MO27.403, MO31.801, MO31.802, TH42.106, TU35.401, TU35.411, WE51.301, WE80.406
- chemical vapour deposition MO82.124
- chemical warfare agents MO81.301
- chemically modified surface MO81.103
- chemicals TU48.207, WE58.302
- chemical MO81.113
- Chemiresistive MO81.102
- chemistry and chemical analysis WE28.202
- chemotaxis TU36.203, WE80.219
- chemotherapy WE48.206
- chip-base TH15.201
- chirality MO81.215
- chitosan nanoparticles TU21.203
- chitosan MO81.525, MO81.528, TU45.108, WE80.102, WE80.103
- chlorine dioxide TU50.191
- chlorine-containing media MO82.126
- chondroitin sulfate MO81.507
- CHP MO27.304
- chromium (VI) WE81.706
- CIGS TU47.602
- circular dichroism WE21.802
- circular dichroïsm TU35.122
- circulating fluidized bed WE81.803
- Citrate-urea combustion MO82.201
- citric acid MO82.214
- cladded dots MO82.204
- Clausius-Mossotti factor TH15.103
- clay particles TU35.914
- clean coal MO27.202, WE57.403
- clean energy solutions TU50.131
- clean energy MO37.401
- clean industrial processes TU31.503
- clean process MO27.401
- clean regenerative energy TU50.190
- clean rooms MO82.409
- clean technology WE81.714
- clean tech WE28.201
- cleaner TU31.501
- cleaning process TH22.104
- cleaning WE81.724
- cleanroom MO81.125, WE81.914
- cleantech MO37.403, TH28.306, TU28.205, WE28.103, WE28.106, WE82.108, WE82.111, WE82.115
- climate change WE82.113
- clinical diagnostics MO81.606
- clothing MO81.723
- clusters TU35.802, TU35.831
- CMOS chip MO81.304
- CMOS-MEMS TU36.401
- CMOS TU36.408
- CMP WE43.105
- cMUT TU36.318
- CNT network transistor MO81.127
- CNT transistors MO82.119
- CNTs MO81.816
- CNT MO81.725, MO81.728, TU13.101, TU21.505, TU35.901, TU41.805
- CO oxidation MO81.731, TU47.404, WE81.710
- co-culture model MO81.727
- co-culture system TH25.101
- co-stimulatory molecules MO81.505
- CO2 capture WE81.715
- CO2 neutral MO57.502
- CO2 MO57.504
- Co2 WE81.205
- CO2 WE81.402, WE82.102
- coacervate complexes WE80.316
- coagulation TU41.201, WE28.105, WE80.315
- coal TU47.305
- coarse grain simulation TU35.919
- coarse-grain simulation WE42.106
- coassembly TU41.203
- coateing WE80.515
- coatings MO31.103, MO82.129
- coating TU27.302, TU35.405, WE21.701, WE41.403, WE80.303
- Cobalt oxides WE81.710
- CoFe2O4 WE80.115
- cognitive sciences WE23.105
- coil WE81.401
- coir fiber WE81.722
- collaborative TU26.107
- collagen TU25.102, WE41.703
- collector WE81.104
- colloidal delivery systems WE41.102
- colloidal dispersions TU41.201
- colloidal interactions TU41.201
- colloidal particles WE41.103
- colloidal quantum dots TH12.202
- colloidal synthesis WE57.205, WE81.102
- colloids WE80.517
- colloid TU35.813
- color imaging TH28.103
- colorectal cancer MO81.510
- colourant WE51.206
- combinatorial libraries TU35.306
- combustion synthesis TU35.701
- combustion TU47.305
- commercial alumina production MO57.302
- Commercialization TU27.601
- commercialization TU27.603, TU30.503
- commercial TU41.805, WE41.201
- commerical buildings WE81.201
- comminution MO82.210
- communications MO37.401
- community relations WE82.114
- compact device modeling WE54.101
- compact modeling MO82.107, TU36.308, TU44.103, WE24.101
- compact models TU24.103, WE14.102
- compact model TU14.104, TU30.402, TU44.101, WE14.103, WE44.102, WE54.104, WE54.105, WE80.607
- company WE82.107
- comparison function MO82.117
- compensation WE23.103
- complexity TU35.607
- components WE25.202
- composite materials TH28.203
- composite nanodevice MO81.527
- composites TH11.204, TH41.105, TU35.407, TU36.015, WE41.802, WE51.303, WE51.403, WE80.517
- composite MO81.520, TH41.102, TU36.008
- Composite TU36.021
- composite WE21.504, WE41.804, WE80.307
- compositionally graded SiGe buffer TU36.311
- compressed air energy storage (CAES) MO57.403
- compressed earth block MO27.302
- computational fluid dynamics WE81.501
- computational kinetics MO82.123
- computational MO21.702
- computer chips TU35.411
- computer simulation WE81.811
- concatenation TU35.619
- concave TU36.307
- concentration gradient TU36.203, WE80.219
- concentration MO21.704
- concrete MO37.301, TU28.208, WE82.205
- concurrent processes TU35.619
- condcuting polymer WE41.801
- conductance TU35.814
- conducticity WE80.401
- conducting polymer composites WE23.202
- conducting polymer nanocomposites TU36.010
- conductive epoxies TU35.811
- conductive polymers TH28.106
- conductive polymer MO27.403, WE48.106
- conductive TU36.116
- conductivity TU36.015, WE22.104, WE41.804, WE80.401, WE80.411
- confidence TU26.105
- conformational transitions TU35.122
- conjugate WE80.109
- conjugation TH15.203
- consortium TU26.104
- constant-charge TU36.320
- construction cost MO82.409
- construction properties WE82.202
- construction TU26.107, TU28.208, TU50.143
- contact angle MO81.118, TU35.605
- contact formation WE52.203
- contact imprinting MO81.202
- contact time WE81.701
- contact WE23.203
- contamination TU36.214
- contineous hydrothermal synthesis WE41.202
- continuous commissioning WE82.206
- continuous inkjet printing TU41.601
- continuous model WE80.604
- continuous N2O reduction WE81.709
- contour integration TU41.802
- contour WE80.608
- contractile force TU35.620
- contrast agents MO35.102
- contrast agent WE51.205
- controlled drug delivery MO81.513
- controlled radical polymerization TU21.202
- controlled release MO81.218, TU35.113
- control TH15.203, TU41.204
- controoled drug release MO25.206
- convection effect TU36.102
- conventional electric net WE82.112
- convergence WE23.105
- converging technologies TU26.106
- conversion of waste polymers into monomers TU50.168
- conversion MO57.501
- converting waste heat into electricigy TU50.130
- conveyer WE81.717
- cooling equipment TU50.126
- cooling MO37.504, TU27.301
- cooperativity WE51.705
- copolymers TU41.203
- copper catalyst WE81.804
- copper nanoparticles TU35.405
- copper phthalocyanine (CuPc) WE81.107
- copper sulfide WE57.205, WE81.102
- copper TU36.010, WE80.323, WE82.208
- coquina WE81.903
- core decisions MO82.409
- core-shell particles WE28.404
- core-shell TU36.017
- coreflood WE81.508
- corn ethanol WE81.619
- Cornell TU50.121
- corporate social responsibility MO57.303
- corporate social WE82.114
- corporate strategy WE82.103
- corrosion performance TU36.011
- corrosion protection TU36.010
- corrosion MO37.301
- cosmetic creams TH28.302
- cosmetic ingredient solubilisation WE28.405
- cosmetics TH28.304
- cosmetotextiles TH28.302
- cost analysis TU31.203
- cost benchmarking TU31.203
- cost effectiveness WE28.201
- cost effective MO37.304
- cost impact WE81.724
- coupled resonators TU36.207
- cracking MO57.503
- critical frequency TU36.210
- crossbar architectures MO82.116
- crossbar ionic nanodevices MO81.809
- crosslinking WE80.301
- cryo microscopy MO21.703
- cryo-pumping TU35.517
- cryogenic equipment TU50.126
- cryogenic measurements TU35.517
- Cryptosporidium parvum MO81.711
- crystal direction WE80.405
- crystalline transition WE80.302
- crystalline WE41.703
- crystallinity TU36.006
- crystallite size WE80.307
- crystallite MO31.703
- crystallization processes TU21.101
- crystallization TU35.515, WE51.704
- crystal MO31.103
- CTN TU23.103
- CT MO35.102
- curcumin TH28.304, TU35.118
- curing of coatings TU31.503
- current collapse TH23.103
- current-voltage characteristics TU36.109
- current TU35.402
- curriculum MO82.405, MO82.406
- customer TU26.105
- customized targeted PEG linkers TU35.101
- CVD diamond TH25.301
- CVD MO27.403, TU47.602
- cyclases WE48.208
- cyclic peptides WE48.208
- cyclic voltammetry TU35.907
- cycling TH25.304
- Cyclodextrins TU35.105
- cyclodextrin MO81.128, MO81.502
- cynara MO27.201
- cytochrome TU35.822
- cytokine MO81.721, TU35.204
- cytostatics WE48.208
- cytotoxicity MO81.510, MO81.714, MO81.715, MO81.818, TH21.301
- cytotoxic MO81.725, TU35.110
- Dakota TU50.125
- damage TU35.608
- damping TH13.103
- data center MO37.504
- data monitoring TU31.201
- data storage WE43.101
- data switching TH28.102
- Datacenters MO37.502
- DC-DEP WE80.214
- de nitrification WE28.104
- deagglomeration WE41.802
- debye length MO81.120
- decentralized WE81.913, WE82.109
- decision analysis MO81.718
- decision making MO82.408
- deep reactive ion etching MO82.109
- defects MO81.811, WE81.510
- defect TU35.611, TU35.616
- defense TU35.918
- DeFET MO82.318
- deformation measurement WE51.706
- degradable TU35.103
- degradation TU35.407
- dehydrogenation MO57.505
- deliery TU45.105
- delivery MO81.504, TU35.203, TU45.103
- demand response MO37.403
- denaturation MO81.123
- dendrimers TU35.607
- dendrimer MO81.519, MO81.520
- dendritic cells MO81.505, TU35.204
- density functional calculations TU35.915
- density functional theory TU30.304, TU35.609
- density gradient TU35.613
- density profile TU35.605
- dental fillers TU36.013
- deoxyribozyme TH28.305
- depletion TU36.322
- depolymerization WE82.116
- deposition TU35.514, TU36.118
- depth of penetration TH28.103
- desalination MO57.002, MO81.707
- design for manufacturability WE80.609
- design for manufacturing TU36.302
- design methodology TH13.104
- design TU26.107, WE23.204, WE51.605
- desorption WE81.701
- destruction MO81.301, WE81.610, WE81.703
- desulfurization WE81.801
- detection MO81.107, MO81.110, MO81.113, MO81.125, MO81.314, TU35.123, TU35.918, TU36.408, WE48.101, WE81.914
- developing economy housing WE82.203
- device compiler WE14.103
- device fabrication TH12.202
- device modeling TU30.401
- device physics MO82.107, TU36.308, TU36.310, TU44.103
- devices MO81.125, MO81.912, TH28.206, WE81.503
- dewaterability WE81.812
- dewatered sludge WE81.812
- DFP TU25.201
- DFT/Kohn-Sham TU41.802
- DFT MO21.702, MO81.811, TU35.609, TU36.023
- DG MOSFET TU30.401, WE80.604
- DG-MOSFETs TU44.103
- diabetes MO81.703
- diafiltration MO81.614
- diagnostic device TU28.306
- diagnostic kit TU28.307
- diagnostics MO81.122, TU41.502, WE28.305
- diagnostic TU28.303
- diameter control MO31.802
- diamond TH15.302, TH28.202, TU36.410
- diamoond WE80.505
- diatoms WE51.403
- dicing TU36.214
- dielectric constant TH28.105
- dielectric film testing WE48.202
- dielectric properties MO81.816, WE80.307
- dielectric property TU36.114
- Dielectric Spectroscopy MO81.120
- dielectric WE41.202, WE81.506
- dielectrophoresis (DEP) MO81.110
- dielectrophoresis separation WE41.604
- dielectrophoresis MO35.103, MO81.207, MO81.602, TH15.103, TH22.103, WE41.606, WE51.603, WE80.210, WE80.211
- diesel exhaust fluid WE81.623
- diffraction limited MO25.101
- diffuse light TU31.203
- Diffusion MO82.313
- diffusion TU35.114, TU35.912, WE80.518, WE81.811
- diffusive TU35.404
- diffusivity TU36.203, TU36.306
- digestion WE41.102
- digital design TU36.412
- digital magnetic tagging MO81.606
- diluted magnetic semiconductors MO81.916, TU21.303
- diluted magnetic semiconductor MO82.301
- dimensionality MO81.524
- diode TU36.309
- dip pen nanolithography TU36.116, TU36.117
- dip pen TU21.505
- Dip-Pen Lithography TU41.503
- dip-pen nanolithography TU21.503, TU21.504
- dipolar force TH12.201
- direct carbon WE57.403
- direct conversion WE81.505
- direct current dielectrophoresis WE80.214
- direct deposition TU21.504
- direct methanol fuel cell WE28.207
- direct-fuel cell WE81.813
- directed cell adhesion WE21.401
- directed self assembly WE51.704
- directed self-organization WE57.402
- directi-write lithography TU50.153
- dirt-shedding WE11.301
- disease WE81.711
- disinfecting TU50.186, WE28.308
- disinfection WE81.910
- disk resonator TU36.207
- dispatachable wind MO57.403
- dispenser TU41.604
- dispersing grinding TU35.835
- dispersions MO21.705, WE41.802
- dispersion MO81.801, MO81.804, TH11.204, TH41.204, TU35.830, TU35.835
- display TU35.903
- dissipation TU30.303
- distortion WE23.103
- distributed generation MO37.401, MO37.402
- distributed TU13.101
- DLS TU35.822
- DLVO theory TU41.201
- DMFC WE28.207
- DMG TU36.307, TU36.313, WE80.602
- DM TU36.312
- DNA biosensor WE81.718
- DNA chip TH45.203
- DNA conjugated nanoparticles WE80.314
- DNA extractor TH45.203
- DNA Hybridization MO81.120
- DNA manipulation WE41.605
- DNA nanostructures TU35.608
- DNA self-assembly TU35.608
- DNA sequencing MO81.608, WE80.209
- DNA stretching WE41.605
- DNAzyme TH28.305
- DNA MO25.103, MO25.105, MO35.103, MO81.215, MO81.528, MO81.603, MO81.604, MO81.914, TH12.102, TU35.119, TU35.403, TU35.407, WE21.802, WE41.703, WE42.102
- docetaxel WE48.206
- Donnan theory MO81.707
- dopant TH21.204
- doping dependence MO81.903
- doping WE21.801, WE54.103
- double emulsion solvent evaporation TU35.110
- double flash power plant WE81.204
- double-gate MOSFET WE44.102
- double-gate TU30.404, TU44.104, WE54.103, WE54.104
- double-helical DNA structure TU35.602
- doublle wall carbon nanotubes WE21.801
- Doxil WE48.207
- doxorubicin TU15.104, TU35.120, WE80.117
- DPN TU21.502, TU21.504, TU21.505, TU36.117, TU41.504
- drag force WE80.218
- drag/heating reduction TU28.207
- drag WE82.303
- DRIE MO82.109
- drift-diffusion analysis WE41.603
- drift-diffusion theory WE24.103
- drilling MO57.401
- drinking water WE81.903
- drop mixing WE41.602
- drop-on-demand WE21.601, WE21.603
- droplet formation WE80.206
- drought WE81.719
- drug accumulation WE80.124
- drug delivery systems MO82.405, TU35.106
- drug delivery MO81.403, MO81.512, MO81.907, MO81.908, TH15.204, TH25.204, TH28.202, TH28.309, TU35.112, TU35.113, TU35.119, TU35.307, TU35.308, TU50.108, WE28.305, WE41.204, WE45.201, WE48.205, WE80.118, WE80.121
- drug discovery WE48.202
- drug eluting devices MO81.213
- drug-resistant bacteria WE55.205
- drugs without side effect TU35.102
- drug TU35.124
- drywall TU27.302
- DSC MO82.201
- DSMC WE80.201
- dual gate TU36.311
- Duffing WE43.103
- durability enhancing coatings TU50.203
- dustmites WE82.211
- DWCNT WE80.401
- dye sensitised solar cells TU35.913
- dye sensitized solar cell TU47.601
- dye-sensitized solar cells WE81.101
- dye-sensitized solar cell TU47.603
- dyes MO81.708
- dynamic mechanical thermal properties WE80.319
- dynamic radiation pattern WE48.108
- dynamic range TU36.316
- DYNO-MILL MO82.210
- e-beam lithography MO82.124
- E-Paper WE48.106
- e-waste WE82.116
- E.Coli MO81.610
- each the size of a penny WE28.307
- EAM MO21.702
- earlobe TU28.304
- early developmental stage MO81.720
- earth friendly MO57.301
- earthquake TU36.405
- easy-to-clean WE41.405
- EB-PVD coaters TH28.205
- ebeam lithography TH22.102
- eco-labels WE82.115
- ecodesign WE82.110
- ecological footprint MO37.204
- ecological impact MO81.719
- economic development TU27.603
- economic feasibility MO57.401
- economics TU27.501
- economic WE81.608
- economy MO37.102
- EDA TU36.302
- Edge roughness WE41.605
- EDMOS compact WE24.104
- education MO82.401, MO82.406, TU31.301
- EES WE81.204
- effective drive current TU14.103
- efficiency TU47.305, WE80.113, WE82.103
- effluent threshold WE81.705
- EFM MO81.201
- EGFR MO31.704, MO35.104
- EGS MO57.401
- EHDA WE80.206
- Ehrlich carcinoma WE80.117
- elastic modulus TU35.704
- elastomeric fiber TU36.018
- elecrophilic molecules TH15.303
- electric conductance MO25.105
- electric double layer WE80.225
- electric effects WE80.222
- electric field induced inkjet head TU36.212
- electric field MO81.811, MO82.319, WE80.417
- electric generation TU28.101
- electric range TU28.202
- electrical biosensors MO25.104
- electrical characterization TU41.804
- electrical conductivity WE51.303
- electrical properties WE80.217
- electrical property TU35.706
- electrical sensors WE81.509
- electrical MO25.205, MO81.609, TU25.203
- electricity generation MO57.502
- electricity MO37.403
- electric TU47.403, WE82.208
- electrification WE81.617
- electro-active polymer WE48.102, WE48.103
- electro-deposit MO82.129
- electro-optical assemblies TU50.124
- electrocatalysis WE81.810
- electrochemical impedance spectroscopy MO81.130, TU36.011
- electrochemical polishing WE51.703
- electrochemical polymerization TU36.010
- electrochemical potential theory WE24.103
- electrochemical MO81.610, WE41.404, WE80.503
- electrode polarization MO81.120
- electrodeposition WE80.409
- electrode TU35.413
- electrokinetics MO82.312, WE80.204
- electrokinetic MO35.103
- electroless WE81.504
- electroluminescence MO82.113
- electrolytes WE57.107
- electrolytic MO81.911
- electrolyzer WE81.622
- electromagnetic properties TU35.512
- electromagnetic radiation TH28.206
- electromagnetic rays TH28.103
- electromanipulation TH15.103
- electromigration WE14.101
- electromyography WE28.303
- electron beam irradiation TU35.606
- electron beam physical vapor deposition TU50.146
- electron beams TU31.503
- electron density TU41.802
- electron energy loss TU35.606
- electron field emitter TU41.804
- electron micro-gun array TU41.805
- electron microscopy TU36.117
- electron multiplication WE51.803
- electron scattering TU35.606
- Electron states TH42.105
- electron transport WE52.203
- electron-phonon TU35.616, WE51.802
- electron-windless model WE14.101
- electronic chemicals WE28.405
- electronic identifiers WE57.701
- electronic structure calculation TU41.802
- electronics MO82.102, TU28.201, WE11.401, WE57.606, WE57.702, WE57.703, WE57.704, WE57.705, WE58.203
- electron TU35.606
- electrooculography WE48.104
- electrooptic cells MO81.802
- electroosmosis MO82.312
- electrophoresis MO82.312, TU36.118
- electropsun fibers (aligned MO81.205
- electrorheological effect WE42.103
- electrospinning MO81.211, TU35.709, TU35.818, TU36.008, TU36.014, TU36.016, TU36.022, TU47.601, WE57.103, WE81.712
- electrospray WE80.506
- electrostatic complexation TU41.203
- electrostatic devices TU36.407
- electrostatic TH13.102, TU36.401, WE21.603, WE23.204
- electrowetting MO81.110
- elemental analysis TU50.149
- elemental mercury WE81.708
- EM energy conversions TU35.811
- embryonic WE55.202
- emergemcy response coordination TU36.405
- emergency TU36.405
- emerging contaminants WE81.908, WE81.912
- EMG bio-feedbacks WE28.302
- emissions reduction TU47.305
- emissions TU47.403
- emission WE81.717
- emitter TH15.302
- emitting characteristics WE51.703
- empirical model TU36.306
- emulsifying MO82.212
- emulsion polymerization TU36.017
- emulsion TH21.202, TU35.830
- encapsulation TU35.603, TU35.834, WE41.203, WE80.311
- endohedral metallofullerenes TU36.101
- endosomal escape TU45.108
- endothelail cells WE80.219
- endothelial cells TU35.309
- energetics WE21.403
- energy conversion TH28.206, WE57.202
- energy density WE81.506
- energy deposition TU28.207
- energy efficiency MO27.304, MO57.304, TU31.503, WE28.201, WE82.111, WE82.201, WE82.207
- energy efficient MO37.304
- energy harvesting WE57.104
- energy lifecycle WE82.103
- energy management system WE82.207
- energy management MO37.403, WE82.209
- energy monitoring WE82.209
- energy policy WE81.619
- energy recovery device MO57.002
- energy services TU50.171
- energy storage MO37.402, WE28.206, WE57.203, WE81.507
- energy systems WE81.509
- energy transfer MO81.303
- energy MO27.303, MO81.524, MO82.402, TU48.102, TU48.103, TU48.105, TU48.106, TU49.101, TU49.102, TU49.103, TU49.201, TU49.202, TU49.203, TU49.204, TU49.205, TU49.206, TU50.128, WE11.401, WE57.107, WE57.601, WE57.602, WE57.603, WE57.604, WE57.605, WE58.101, WE58.102, WE58.103, WE58.104, WE58.105, WE58.106, WE81.204
- engine optimization WE82.304
- engineered organisms WE81.605
- engineering TU26.107
- engines WE81.206
- engine WE81.401
- enhancement TU35.402
- enrichment MO81.316
- entrepreneurship TU27.603
- enviromental study TH21.303
- environment responsibility WE82.114
- environmental fate MO81.719
- environmental health TH11.304, TH21.304, WE82.101
- environmental impact MO81.704
- environmental recycling WE82.117
- environmental releases MO81.735
- environmental samples TH11.302
- environmental sector TU50.128
- environmental technology WE28.207
- environmentally friendly MO37.304
- environmental MO27.401, MO81.705, WE81.711
- environment MO37.302, MO81.709, MO81.733, WE28.103, WE28.106, WE81.720
- enzimatic sensor MO81.101
- enzymatic hydrolysis WE81.621
- enzymes MO37.202, TH15.105, WE80.517
- enzyme MO81.401, MO81.812
- EPA regulations WE81.724
- EPA MO81.733
- epidemiology WE81.711
- epoxy TU35.817
- equipment TU50.101, WE81.717
- erosion-resistant and damping coatings TH28.205
- erythrocytes WE80.214
- ESCA TU35.814
- ESD MOS model WE14.104
- ESD TU36.214
- estradiol linker MO81.612
- ethanol MO37.203, MO81.104, TU27.501, WE81.607, WE81.621, WE81.904
- ethics MO81.734
- ethylene MO57.505
- Eu-doped G2O3 TU35.508
- Europe TU50.132
- EUV WE52.101
- evaporation WE80.322, WE81.501
- EVOH WE81.722
- evolution WE55.204
- excretion MO81.509
- exergy WE81.204
- exfoliation TU35.504
- exopolysaccharide TU47.302
- expancel WE80.303
- experimental WE81.807
- explicit surface potential TU44.102
- exposure TH21.303
- extension TU35.515
- extracellular matrix MO31.202
- extracellular recording TU36.215
- extracellular TU35.203
- extraction WE24.104
- fabrication process TU35.706
- fabrication TH42.102, TU36.207
- fabrictation WE11.402
- facades MO37.303
- Facade WE82.204
- factor TU35.402
- false-skin in prosthetic limb TU50.199
- faster TU31.501
- fate MO81.713
- FD-SOI devices TH23.104
- FDG WE28.301
- FDTD-PIC MO82.122
- Fe-oxalate WE51.201
- FEA WE41.701
- FEM(finite element method) TU36.209
- FEM TH13.104, TU41.802
- fermentation WE81.612
- ferroelectrics MO82.302
- ferroelectric TU36.023
- ferromagnetism MO81.916, TU35.609
- FET TH23.103
- FE TU41.805
- fibDAC TH25.306
- fiber optics WE28.304
- fibers MO81.211
- fibre WE41.304
- fibrillogenesis TU25.102
- fibrin TU41.101
- fibrous scaffolds MO81.205
- FIB WE22.105, WE51.706, WE53.101
- fidelity MO82.104
- field effect tansistor TU41.804
- field emission display MO82.122
- field emission TU35.616, WE51.802, WE51.803
- field emitter TU41.805
- field plate TH23.103
- field-effect transistor MO81.123
- field-emission TH28.203
- field-flow fractionation TU35.417
- field TU35.402
- filamentous phage particles WE25.202
- filamentous phage WE55.205
- filling MO31.804
- film growth TU47.602
- film-boiling WE80.203
- film TU36.113
- filter media TU35.416
- filterless TH28.103
- filters MO81.708, MO81.723
- filter WE81.903
- filtration MO81.723
- financing WE82.104
- FinFET modeling WE54.102
- FinFET WE80.408
- fingerprint recognition MO81.114
- finite element method modeling TU35.620
- finite element method WE80.124
- finite elements TU36.318
- finite temperature WE52.204
- first principles TH15.303
- first-principle calculations TU41.802
- Fischer Tropsch MO57.501
- Fischer-Tropsch WE81.402
- fish TU35.808
- fit-out decisions MO82.409
- fitness / social networking TU50.110
- flame process WE21.303
- flame retardant TU35.833
- flame synthesis TU35.828
- flash memory TU35.825
- flash MO82.115
- flat panel displays TU35.411
- flexible electronics TU35.903
- flexible MO81.808, TU41.803, TU47.603
- flip-chip TH25.303
- floating-body TU44.104
- flocculation TU41.201, WE28.105
- Florence TU50.122
- Flow-3D MO26.201
- fluctuations TU35.615
- fluctuation WE52.202
- flue gas MO27.202
- fluid motion WE80.203
- fluid purification TU35.416
- fluid shear WE28.105
- fluid-structure interaction MO57.405
- fluidic oscillator WE81.901
- fluidics MO82.311
- fluidic WE28.205
- fluidised bed TU35.412
- fluidized bed WE81.802
- fluorescecne tag defect defect inspection ALD film MO81.909
- fluorescence lifetime TU35.912
- fluorescence resonance energy transfer TU50.173
- fluorescence MO81.521, TH15.203, TH41.204, TU41.703
- Fluorescence WE51.202
- fluorescence WE51.204, WE80.109
- fluoropolymer MO27.403
- fluroscence WE80.317
- flux WE81.724
- fly ash WE82.205
- foam core WE80.303
- foams WE80.310
- foam TU36.009
- focused and applied research TU50.166
- folic acid WE80.102
- food nanoemulsion WE80.318
- food spoilage MO81.702
- food MO57.301, WE41.101, WE57.807, WE80.321
- force sensors WE43.105
- force sensor MO81.105, MO81.807
- forced hydrolysis MO82.212
- forced water flow evaporation WE82.211
- force MO81.913, TU35.402, WE80.519
- forecourt TU27.501
- formal verification TU36.314
- formaldehyde treated rice husk WE81.706
- formulated materials WE41.201
- formulations TU35.830
- fouling MO57.304
- fountain-pen setup TH22.103
- FPGA MO82.307, TU36.412
- FP TH45.101
- fractal clusters WE80.315
- fracture toughness TU36.012
- fracture TU35.817
- free energy surface MO81.914
- free-standing membrane WE28.206
- free-standing polymer membrane WE22.104
- free-surface flow WE80.222
- frequency matching TU36.209
- friction coefficient WE41.402
- friction TU35.809, WE41.702
- FTC WE82.113
- FTIR MO81.917, MO82.201, MO82.205, MO82.214
- fuel and energy efficiency TU28.207
- fuel cells TU28.104, WE57.402, WE57.404, WE81.902
- fuel cell MO57.201, MO57.203, WE28.203, WE28.205, WE28.207, WE57.403, WE81.809, WE81.901
- fuel-cell WE81.814
- fuels WE81.205
- full fuel cycle assessment TU47.402
- fullerene MO82.129
- fullerenol MO81.515
- functional foods WE41.102
- functional imaging MO82.121
- functional materials TU36.005
- functional polymers TU21.202
- functional RNA TU21.501
- functional toners TU28.104
- functionalisation MO31.804, WE21.505
- functionalised silsesquioxanes WE57.404
- functionalization MO31.706, MO81.302, MO81.714, TU35.604, TU35.821
- functionalized fullerenes TH11.301
- functionalized peptides TH45.101
- functionalized TH12.103
- functionzalized particles TU35.505
- Förster transfer WE80.312
- G3 WE48.107
- g5p WE80.314
- GAA MOSFET TU30.401
- GaAs MO82.106, WE80.420
- gadolinium TU35.827
- gain TU14.102
- gamma WE81.505
- GaN TH23.103, WE28.102
- gap geometry WE41.605
- gap height WE51.701
- gas flow sputtering TU36.403
- gas molecule physics TU35.519
- gas processing WE28.206
- gas sensing WE22.103
- gas sensor MO81.103, MO81.104
- gas tubine TU28.102
- gas turbines WE81.607
- gas-sensing WE48.202
- gaseometric analysis TU28.304
- gasification TU28.102, TU31.304
- gas TU35.606, WE80.201
- gate controlled WE80.209
- gecko foot WE21.803
- gels TU35.502, WE41.101
- gene delivery. targeted delivery MO81.510
- gene delivery MO81.517, TH15.204
- Gene delivery TH25.203
- gene delivery TU35.107
- Gene Delivery TU35.109
- gene delivery TU35.202, WE21.402, WE41.603, WE55.204
- gene expression MO25.201
- gene therapy TU35.201
- generation WE81.719
- generator WE81.401
- genetic analysis TU25.205
- Geneva research TU50.192
- gene WE45.201
- genome sequencing TU35.121
- genomics WE80.101
- Geothermal MO27.304
- geothermal MO57.401, MO57.402, TU31.301, WE81.204
- germanium antimony sulphide MO82.124
- germanium diffusivity TU36.306
- germanium self diffusivity TU36.306
- GHG WE82.102
- GIS TU27.506
- glancing angle TU25.202
- glass substrate WE28.206
- glasses WE41.101
- glaucoma TU28.306
- glioma WE55.203
- gliosis MO25.203
- global warming TH41.202, WE81.711, WE81.715, WE82.108
- global WE81.719
- gloves MO81.723
- glucoma TU35.111
- glucose consumption TH45.204
- glucose sensor TH45.204
- glycerine TU47.305
- glycerol-rich product TU47.302
- Glycerol MO82.214
- glycidyl methacrylate MO81.708
- glycosylation MO81.303
- gold catalyst TU35.820
- gold colloids WE80.518
- gold mining TU50.205
- gold nanocrystals TH41.104, TU35.601
- gold nanoparticles MO81.117, MO81.206, MO81.309, MO81.522
- Gold nanoparticles TH15.105
- gold nanoparticles TH42.101, TU35.708, TU35.823
- gold nanoparticle MO81.303, MO81.312, TH11.302, TH15.201, TU35.822, WE51.206, WE80.313, WE80.321
- gold nanorods WE80.122
- gold nanorod TH15.203, TU35.804
- gold nanoshells WE80.122
- gold nanospheres TH28.309
- gold-citrate nanoparticles MO31.202
- gold MO81.126, MO81.302, MO81.507, MO81.525, TU35.824, TU35.827, TU35.902, WE51.205
- government funding TU26.101
- government MO81.734
- GP optimization TU36.315
- GPS TU50.159, WE48.107
- graded protective coatings TH28.205
- graft WE48.203
- grain boundary TU35.611
- granular filtration WE81.713
- graphene nanoribbons MO81.817
- graphene MO82.123
- graphite TU35.413
- graphitized MO81.805
- gratings MO82.110
- green buildings MO37.505
- green building MO37.301, TU27.305, WE81.714, WE82.202, WE82.205
- green Chemistry MO27.401
- green chemistry MO27.402, MO82.309
- green construction TU27.305
- green energy TU27.602
- green gasoline MO57.503
- green house gases WE81.617, WE81.620
- green hydrogen TU27.501
- green marketing WE82.115
- green processing of CCA’s WE81.724
- Green Recycle Demolition WE81.723
- Green-e WE82.107
- greenhouse gas emissions TU47.402
- greenhouse gas WE82.102
- green MO27.303
- Green MO37.502
- green MO57.301, WE82.113
- grid operator MO37.403
- groundwater WE28.104, WE81.905
- growth delay MO81.519
- growth dynamics TU35.917
- Growth kinetics MO81.905
- growth kinetics TU35.518
- growth MO82.408, WE80.417, WE80.419
- grwoth MO82.319
- gyroscope TU36.314
- H-ZSM-5 MO57.503
- H5N1 TH25.202
- hair TU35.819
- Hall effect MO82.305
- halloysite WE21.503
- Haloferax mediterranei MO27.404
- halogen free flame retardants WE28.406
- Hamiltonian TU36.106
- Hapten-carrier conjugate TU35.618
- harbours WE81.702
- hard drive TH28.102
- hard mask TU36.110
- hard matals TU35.702
- hard template TU36.111
- hardening TH23.101, TH42.103
- hardware filter WE23.104
- Hardware-in-the-Loop Simulation WE82.304
- Harvard nanotechnology TU50.164
- hazardous MO81.113
- HBT TU36.315
- HCCI engines WE81.710
- HCV TH28.305
- HDPE TU36.004
- health risk MO81.724
- healthcare WE57.802, WE57.805, WE57.806, WE81.711
- health WE81.711, WE81.720
- heat sources MO82.315
- heat transfer TU35.810, TU47.305
- heating MO81.309, TU50.129
- heavy crude oil TU28.204
- heavy metals WE81.701, WE81.915
- heavy-duty truck WE81.717
- helical rosette nanotubes TU25.101
- helicapter WE81.717
- helium TU41.704
- hematite TH41.203
- heparin MO81.502
- hepatitis B WE21.403
- hepatitis C TH28.305
- Hessen development TU50.141
- HEV TU28.202, TU47.405
- hexagonal WE80.414
- HFCVD MO81.803
- HF TU36.213
- Hg-control WE82.205
- hi speed scanners TU36.405
- hierarchical material WE42.105
- hierarchical pore structure composites WE80.304
- hierarchical WE51.601
- high bay labs MO82.409
- high efficiency lighting WE82.207
- high efficiency WE82.301
- high focus capability MO82.122
- high frequency measurements WE41.605
- high frequency TU36.315
- high G TU36.301
- high pressure homogenization MO31.205
- high speed atomic force microscopy TU35.312
- high stiffness WE80.310
- high surface area WE80.416
- high throughput screening WE80.208
- High-Aspect-Ratio MO81.911
- high-k material WE52.202
- HIGH-PRESSURE DEPOSITION-SOLIDIFICATION TECHNOLOGY TU36.103
- high-rise WE81.714
- high-stability TH13.102
- high-throughput TU35.301
- highly concentrated emulsion TH21.202
- HiPCO CNT TU36.115
- HiPco MO81.724
- HiSIM2 WE14.102
- HIV TH25.201
- HNT WE21.503
- hollow fiber filters MO81.614
- home performance MO27.304
- homeland security TU35.918
- Homes carbon reduction MO27.304
- homing peptide TH15.204
- homogeneous repartition TH21.203
- homopolymer TU35.121
- Hong Kong research TU50.184
- Horsh radish peroxidase WE80.317
- hot carrier effects WE80.606
- hot embossing WE80.513
- HPLC MO81.116
- HPV TU28.307
- HSQ MO81.202
- HT-AFM TH11.202
- human cell types MO81.715
- human inventory TU36.405
- Human serum albumin MO81.907
- human-computer-interfaces WE48.104
- humidity sensors WE23.202
- humidity MO81.104, MO81.106
- HVAC IAQ Energy Efficient Technologies MO37.501
- HVAC TU27.301
- HVMOS WE24.104, WE80.608
- HV WE80.607
- hyaluronan MO81.206
- hyaluronic acid (HA) TU36.014
- hybrid materials WE80.309
- hybrid nanostructures TU35.306
- hybrid nanostructure WE22.103
- hybridization probes TU28.307
- Hybridization MO25.103
- hybridization MO25.105, MO25.201
- hybrid TU35.609, TU36.020
- hydophobic WE57.107
- hydration repulsion TU41.201
- hydration TU35.122
- hydraulic pressure WE43.104
- hydride WE28.204
- hydrocarbons reforming TU28.102
- hydrocarbons WE81.802
- hydrocarbon TU35.902, WE81.803
- hydrodynamics TU11.101
- hydrogel MO25.206, MO81.119, TU36.003
- hydrogen bond force TU35.602
- hydrogen chloride WE81.708
- hydrogen evolution reaction TU35.506
- hydrogen peroxide TH28.302
- hydrogen production WE28.203
- hydrogen storage MO81.815, WE28.201, WE28.204
- hydrogen sulfide TU36.411
- hydrogenase MO81.209, WE81.602, WE81.612
- hydrogenation MO81.810
- hydrogen MO81.209, TH28.306, TU27.503, TU27.504, TU27.505, TU27.506, TU28.106, TU28.205, TU31.301, TU31.303, TU47.403, WE28.207, WE81.504, WE81.622, WE81.704, WE81.801, WE81.802, WE81.803, WE81.804, WE81.805, WE81.811
- hydrophobic attraction TU41.201
- hydrophobic channel WE80.204
- hydrophobically associating polyacrylamides TU35.818
- hydrophobicity WE41.402, WE80.507
- hydropower TU31.301
- hydrothermal synthesis WE41.201
- hydrothermal technique MO82.112
- hydrothermal WE80.402, WE81.911
- hydroxyapatite MO81.216, TU35.314, WE80.115
- hydroxyappatite WE48.203
- hypersonic TU28.207
- hyperthermia MO81.315, WE80.110, WE80.115, WE80.117, WE80.118, WE80.119
- hypoxia MO82.412, TH15.202, WE80.110
- ICP WE21.304
- Identification MO81.123
- identification TU36.101
- IGCC power plant TU47.304
- IgG coating MO81.313
- IL-10 TU35.204
- IL2 WE48.207
- image analysis electron microscopy particle size distribution TU41.701
- image processing MO81.613
- imaging probes MO81.521
- imaging MO35.101, MO81.311, MO81.314, MO81.501, MO82.121, TU35.104, TU36.408, TU50.149, WE28.301
- Imaging WE51.202
- imaging WE80.104, WE80.109
- immersed boundaries WE51.604
- immobilization of enzymes MO81.210
- immobilization MO25.101
- immunoassays MO81.609, TU35.301, TU35.909
- immunoassay MO81.607, MO81.611, TH15.101, TH45.201
- immunomicelles WE80.120
- immunomodulated response MO81.508
- immunonanoparticles WE48.206
- immunosupressiva WE48.208
- immunotherapy TU35.204
- impact ionization WE44.103
- impedance analysis MO82.105
- impedance sensor MO82.318
- impedance spectroscopy MO81.109
- impedance TU35.907
- implantable electrodes TU36.215
- implants WE48.205
- implant WE48.203
- impurity doping TU36.315
- impurity TU35.616
- in situ growth MO25.204
- in situ SAXS/WAXS MO81.905
- in situ MO25.201, WE28.104
- in vitro diagnostics TH25.102
- in vitro modeling MO81.403
- In vivo gene delivery TU45.107
- in vivo tracking WE80.321
- in vivo MO81.501, MO81.509, TU35.123, TU35.206, TU45.103
- In-chip WE21.601
- in-situ paricle monitoring MO21.704
- in-vitro fertilization TH45.202
- inactivation MO81.711
- InAs WE80.419
- Independant double gate transistor TU36.110
- independent double-gate transistor WE80.603
- Independent gates WE80.604
- indigo carmine WE80.102
- indium tin oxide TU35.814
- Indium MO82.313
- indoor air quality WE82.211
- inductive heating TU35.411
- inductively-coupled plasma WE21.304
- industrial economics MO81.704
- industrial WE21.301
- industry-university partnerships TU30.503
- inertial shock sensor TU36.301
- infection MO81.128
- inflammation MO81.507, MO81.518, MO81.526, TU45.104
- informatic technology of production TU35.619
- informatics WE80.101
- information TU30.502
- infrared absorber TU36.113
- infrared laser TU35.612
- Infrared laser WE81.501
- infrared laser WE81.502
- infrared MO82.110, TH15.302, TH28.309
- infrastructure TU27.506
- InGaAs/GaAs quantum dots TH42.105
- injection dynamics TU35.913
- Injection molding TU35.503
- Injection WE21.601
- inkjet toners or dyes and paints WE28.405
- Inkjet TU36.115, WE21.601
- inkjet WE21.603
- Inks TU41.503
- innovation MO27.402, MO82.402
- Innovation MO82.410
- innovation WE82.105, WE82.110
- inorganic insulation layer WE43.102
- inorganic nanomaterials WE45.202
- inorganic oxides TH11.204
- inorganic-organic hybrid films WE41.402
- InP nanocrystals MO82.203
- input device WE48.104
- installers TU31.201
- institute MO82.401
- instrumentation WE57.706, WE57.707, WE58.201, WE58.202, WE58.204, WE58.205
- Insulin MO81.703
- insulin TU35.103
- integrated circuit TU36.320
- integrated design WE82.201
- integrated systems MO82.401
- integrated system WE81.614
- integrated TU31.201
- Integration MO57.404
- integration TU13.101, WE81.714
- intellectual property MO82.407
- Intellectual Property MO82.410
- intelligent WE82.204
- interactive gaming WE48.104
- interconnect TU35.901
- interdiffusion TU36.304
- interdigitated MO81.107
- interdisciplinary research TU26.107
- interface crack analysis WE51.706
- interface traps WE80.601
- interface-trap change WE80.601
- interfaces WE11.402
- interface TU21.104
- interference colour MO27.301
- interference microscope WE51.702
- interference MO81.121
- intermediate temperature SOFC WE81.806
- intermediate temperature solid oxide fuel cell MO57.201
- Intermetallics WE51.704
- intermetallide TU35.611
- Intermittent MO57.404
- intermodulation TU36.312
- international TU31.301, WE81.913
- internet based TU31.201
- interphase TH11.203
- intra-carotid administration TU15.102
- intracardiac TU28.301
- intranasal delivery MO81.703
- intranasal TU45.108
- intrinsic delay TU36.307
- inventory WE82.102
- inverter TU31.201
- investigation WE81.105
- investment MO82.407, TU27.603
- ion beam processing WE41.303
- ion bombardment WE80.514
- ion selectivity MO81.707
- ion-sieve TU35.908
- Ionic building blocks MO81.809
- ionic conductor WE80.217
- ionic liquid TU35.801
- ionic reservoirs MO81.203
- ionizing radiation TH28.206
- IPO TU27.602
- ip MO82.407
- IP TU27.601, TU30.503
- iridium oxide nanowires TU35.313
- iridium oxide TU25.203
- iron carbides TU35.106
- iron catalyst MO57.501
- iron oxide nanoparticles MO35.104, WE80.107
- iron oxides TU35.106
- iron oxide MO81.731, MO82.216, WE81.804
- iron-oxide nanoparticles TU15.102
- irradiation WE81.510
- Ischemic myocardium TU35.109
- ISE TU36.312
- ISFET WE81.718
- isocyanate MO31.706
- isolation WE81.403
- Isolator WE80.410
- isoquinoline MO81.115
- isotactic polypropylene TU36.007
- ito WE57.203
- janus TU35.804
- Jerusalem research TU50.206
- Jerusalem TU50.136
- jet instability TU41.601
- joining TH25.303
- JUNCAP2 TU14.101
- junctions TU14.101
- junction WE81.510
- Kaposi sarcoma WE48.207
- Kerr effect MO82.301
- Key words MO82.310
- kinetic Monte Carlo MO82.108
- kinetic redundancy TU35.913
- kinetics TH21.302, TU25.204
- kite engine TU50.204
- Klaassen-Prins (KP) method TU24.101
- knudsen MO81.913
- KOH etching TU36.206
- Kyoto WE81.610, WE81.703
- La-Ni-O series MO57.202
- lab on a chip MO81.607
- Lab on a chip WE21.601
- lab-on-a-chip MO81.129, WE48.202, WE51.602
- lab-on-a-disc TH45.201
- lab-on-a-particle TU41.103
- lab-on-achip WE41.602
- label-free imaging WE48.202
- label-free MO81.121, MO81.124, MO81.607, WE80.510, WE81.718
- labeling MO25.201
- laboratory glass TU50.101
- laboratory TU26.107
- lactate MO81.211
- Lactococcus.lactis WE81.707
- lag-lead TU36.402
- lamellar TU36.108
- laminometer TU28.306
- landfill gas WE81.206
- landfill MO27.203
- landscape bacteriophages TU35.301
- landscape phage TU35.302, TU35.307
- Langmiur-Blodgett TU35.520
- Langmuir films TU35.521
- Langmuir-Blodgett films TU35.521
- Langmuir TU35.520
- laparoscopy TU28.302
- large area imprint WE52.102
- large area WE80.403
- laser ablation TU41.602
- laser actuated micro/nano bubble. acoustic-fluidic microdevice WE80.220
- laser sintering WE80.505
- laser-gas absorption TU31.502
- lasers TU50.124
- laser TU36.214
- lateral force microscopy WE51.705
- lateral force WE80.508
- lateral stability TU35.203
- lateral-driven MO81.602
- latex WE41.701
- latitude WE81.711
- lattice heating TH23.104
- layer-by-layer TU21.302, WE80.517
- layered double hydroxides TU35.821
- LCA MO37.302, WE82.107
- LCOE TU31.203
- LDH nanoparticles WE21.402
- LDMOS WE24.104, WE80.607, WE80.608
- lead removal MO81.706
- Lean NOx trap WE21.303
- learning MO82.408
- LED WE28.101, WE28.102
- LEED-IV MO82.302
- LEED MO27.303, WE82.201
- Leidenfrost WE80.203
- levelized cost of electricity TU31.203
- levitation TU28.302
- lexA WE81.602
- Li-ion battery WE57.101
- Li-ion WE81.507
- license-to-operate WE82.114
- Licensing TU27.601
- life cycle analysis MO81.722, TU47.304
- life cycle assessment TU50.127, WE82.107
- life cycle WE81.720
- lifetime TH25.304
- lift-off technology TU36.411
- lift-off WE43.101
- ligand-receptor internalization WE55.204
- ligand-receptor MO81.204
- ligh-emitting diode WE81.910
- light assisted protein immobilization MO25.101
- light emitting diodes TH12.202
- light scattering MO21.705, TU35.802, TU41.201, TU41.702
- light sensor WE82.207
- lighting WE28.101
- limiting WE42.203
- LiMn2O4 spinel WE81.911
- linear cofactor difference operator TU36.309
- linearity TU36.313
- lipid adsorption WE22.104
- lipid MO25.202, TU21.503, TU36.108
- liposome size WE80.113
- liposomes MO81.310, TH15.204, TH28.309, TU35.830, TU45.103, WE41.203, WE80.106
- liposome MO81.501, TU35.107
- liquid crystals MO81.802, WE41.103
- liquid crystal TU25.102, WE21.701
- liquid handling MO81.613
- liquid helium MO82.127
- liquid phase MO82.126
- liquid separation TU50.189
- lithium ion battery TU28.201
- lithium metal phosphates TU28.202
- lithium titanate WE81.507
- lithium-ion battery TU28.202
- lithium WE57.107, WE81.911
- lithography TH22.101, WE52.101
- livestock WE81.620
- LNA TH25.205
- LNT WE21.303
- load cell MO81.105
- load sensor MO81.105
- local MO81.309
- Location WE48.107
- locked nucleic acid TH25.205, TU35.101
- locomotive WE81.717
- long term stability MO81.523
- long-circulating nanoparticle TU45.107
- long-term eye movement recording WE48.104
- low cost WE28.308
- low density WE80.310
- low light TU31.203
- low limit of detection TH25.104
- low noise MO81.130
- low pressure inductively coupled plasma MO31.803
- low temperature MO57.402, WE54.105
- low turn-on voltage MO82.122
- low vibration labs MO82.409
- low-cost-electronic WE48.106
- low-energy MO27.403
- low-temperature plasma WE80.301
- low-temperature synthesis TU35.411
- LSPR MO81.315
- lubricants TH28.202
- luciferase MO81.304
- luciferin MO81.501
- luminescence MO31.705, TU35.508
- luminescent TH15.205
- lung cancer WE80.210
- lung carcinoma WE48.207
- LZO films TU30.302
- M&A TU27.602
- M13 bacteriophage TU35.313
- machine tool WE81.717
- macro-meso porous silica WE21.305
- Macromonomer TU36.021
- macrophages MO81.517
- macrophage TH25.201
- macroporous WE42.105
- magnesium oxide MO81.716
- magnesium WE28.204
- magnetic bead TH45.203, WE80.209
- magnetic biosensors MO81.606
- magnetic characterization TU35.704
- magnetic dot arrays MO82.106
- magnetic drug target WE80.115
- magnetic field topography TU15.102
- magnetic field MO81.504, MO81.506, TU35.409, WE53.103
- magnetic force WE80.114
- magnetic isotopes MO82.310
- magnetic nano-particles MO81.904
- magnetic nanoparticle transport WE41.603
- magnetic nanoparticles MO81.508, TH21.302, TU35.823, TU41.203, WE80.114
- magnetic properties TU35.507, TU35.705, TU35.811
- magnetic resonance imaging (MRI) MO35.104
- magnetic semiconductor MO82.106
- magnetic sensing TH28.102
- magnetic separation TU35.823
- magnetic targeting TU15.102
- magnetic MO31.703, MO81.315, MO82.305, TU28.302, WE80.309
- magnetite TU35.813
- magnetoelastic MO81.126
- magnetofection WE41.603
- magnetophoresis WE41.603
- magnetoresistance MO82.305
- magnetosomes MO81.308
- magnetotactic bacteria MO81.308
- magnetotransport MO82.305
- magnet WE81.401
- MALDI TU25.206
- man-machine interface WE28.306
- management consulting TU50.144
- manganese dioxide WE57.102
- mangnese TU35.827
- manufactoring tolerances TH13.103
- manufacturing TH41.106
- Map4K4 TU45.104
- mapping model WE80.408
- mapping MO81.314
- marangoni instability TU41.601
- Marangoni WE80.222
- marine biofouling WE82.303
- market potential MO82.402
- market research TU27.303
- market waste WE81.615
- marketing WE82.113
- markets WE82.109
- mass producible TH25.104
- mass spectroscopy TU50.134
- masterbatch WE41.804
- materials and manufacturing processes WE28.401
- materials research TU50.121
- materials MO37.303, TH28.202, TU48.201, TU48.202, TU48.203, TU48.205, WE58.301, WE58.304, WE58.305, WE58.306, WE81.503, WE81.810
- material TU35.310
- mathematical modeling TU36.201
- matter TU35.606
- MBR TU27.304
- MD simulation WE80.205, WE80.211
- MDT WE80.115
- MD TH45.101
- measurements TH11.304, TH21.304
- mebendazole TU35.116
- mechanical and chemical activation TU28.206, WE28.403
- mechanical attrition TH41.201
- mechanical engineering/energy storage WE28.202
|
- mechanical model WE51.701
- mechanical properties and morphology WE80.319
- mechanical properties TH41.202, TU35.602, TU35.708, TU36.013, TU36.015, TU36.019, WE80.302, WE80.401
- mechanical property TU35.706
- mechanism MO82.309
- mechanosensor TU50.199, WE48.102, WE48.103
- medical devices TH28.102, WE57.802, WE57.805, WE57.806
- medical device MO31.201, WE28.303
- medical diagnostics WE48.202, WE80.214
- medical imaging TU28.305
- medical textiles TH28.302
- medicine MO81.122
- medico TH28.308, WE48.209
- melanin TH28.206
- melanoma B-16 WE80.117
- melanoma WE48.207
- melting temperature (Tm) MO81.123
- membrane kinetics MO81.713
- membrane systems TU50.189
- membrane technology MO57.505
- membrane-less filtration WE28.105
- membranes TU27.304, TU36.118, TU41.102
- membrane MO81.311, MO81.604, MO81.609, TH11.202, TU21.104, TU27.505, TU35.909, WE28.207, WE41.702, WE41.803, WE51.702, WE57.107, WE81.906
- memory-shaped TU28.301
- memory MO82.103, MO82.114, MO82.115, TU41.801, WE51.402
- MEMS accelerometer WE23.104
- MEMS gyroscope TH13.103
- MEMS integration TU36.215
- MEMS MO31.103, MO81.105, MO81.603, MO81.613, MO81.910, MO81.920, MO82.403, TH13.102, TH13.104, TH15.302, TH25.204, TH42.102, TU13.101, TU36.204, TU36.206, TU36.208, TU36.211, TU36.214, TU36.301, TU36.314, TU36.316, TU36.403, TU36.407, WE23.101, WE23.102, WE23.201, WE41.601, WE43.103, WE43.105, WE51.701, WE51.702, WE53.102, WE57.701
- meniscus-mediated surface remodeling TU21.501
- meniscus WE51.703
- mercury detection TH11.302
- meso-scale kinetic Monte Carlo WE81.501
- meso/macroporous TH21.202
- mesoporosity TU36.111
- mesoporous materials MO81.505
- mesoporous silica TH42.103
- mesoporous TiO2 WE81.101
- mesoporous MO82.217, WE42.105
- mesostructured silica MO82.202
- metabolism TH45.202
- metal binding protein TU50.117
- metal binding TH11.103
- metal composites WE51.301
- metal doped titania MO81.710
- metal nanoparticle TU35.801
- metal organic frameworks WE28.207
- metal oxide nanoparticles MO81.716
- metal oxides MO81.301, TU36.104, WE21.301, WE80.308
- metal oxide MO81.705
- metal powders TU50.104
- Metal- polymer nanocomposites WE80.511
- metal-insulator transition TU21.303
- metal-layered WE43.101
- metal-oxide gas sensors TU35.701
- metal-silicide-coated SiNWs WE80.418
- metallic nano structures WE22.106
- metallofullerenes TU35.603
- metal MO25.102, WE81.811
- metamaterials WE41.301
- metastasis TU28.303
- meter system TU31.201
- meter TU31.201
- methane production MO27.202
- methane MO27.203, WE81.610, WE81.703
- methanol WE81.402
- Methotrexate MO81.514
- metrics MO37.302
- Mexico WE81.610, WE81.703
- Mg(OH)2 TU35.833
- mice brain MO81.605
- micellar dispersion WE80.112
- micelle kinetics WE41.704
- micelles WE80.104
- micelle MO31.103, WE80.109
- micro actuators WE43.102
- micro bioreactors TU41.603
- micro fluidics TU41.604
- micro fluidic TU11.101
- micro gyro sensor TU36.209
- micro processing TH28.102
- micro pump TU41.603, WE80.213
- micro-cantilever pixel TU36.205
- micro-CT MO21.701
- micro-DMFC WE80.212
- micro-integrated sensor MO81.111
- micro-nanotechnology WE80.111
- micro-Raman spectroscopy TH45.101
- micro-robots WE23.102
- micro-scale solar thermal cogeneration TU50.180
- micro-SOFC WE28.206
- micro-thruster WE80.224
- micro-tip WE43.101
- micro/nano combined structure WE80.513
- micro/nanoporous gel TU35.912
- microactuators TU50.133
- microarrays MO81.613
- microarray WE21.602
- microassembly TU36.321
- microbatteries TU36.201
- microbattery TH28.104, WE80.416
- microbead MO81.611, TH45.201
- microbes MO81.125, WE81.914
- microbial fuel cell MO57.502
- microbial synthesis TU35.509
- microbiology WE81.903
- microbioreactor TU25.201
- microcantilevers TU36.201
- microcapsules TU35.118
- microchannel plate WE51.803
- microchannel WE80.201
- microcontact printing MO81.809
- microdevice WE80.214
- microelectromechanical systems TU36.407
- microelectronic components TU50.133
- microelectronics TU13.101, TU41.801
- microemulsions TH41.103, TU21.103
- microemulsion MO81.703, TH21.204
- microfabrication MO81.613, TU36.404
- microfluidic devices WE51.602
- microfluidic device TH45.204, TU36.203
- microfluidic drop generator TU41.601
- microfluidic micromixer WE80.212
- microfluidics foams simulations WE80.223
- microfluidics journal TU50.105
- microfluidics MO26.201, MO81.913, MO82.312, TH13.101, TH45.202, TU25.201, TU41.602
- Microfluidics WE21.601
- microfluidics WE41.203, WE41.601, WE51.604, WE51.605, WE80.209, WE80.219, WE80.221, WE80.222
- microfluidic MO81.101, MO81.116, MO81.602, MO81.603, TH25.102, WE80.208
- microfluidizer WE41.204
- Microfluidizer WE41.802
- microgenerators TU36.201
- microimaging MO81.605
- microlens array MO81.119
- micromechanism TU36.321
- micromirror TU36.401
- micromixer WE41.602
- microneedle array MO81.601, TU36.317
- microphone array WE23.101
- microporous TU35.805
- microprocessor WE23.103
- micropropulsion WE80.224
- micropump WE51.605
- microreactors WE80.215
- microreactor TU21.104
- microrheology TH41.203
- microscopy TU41.704
- microsensors TU50.133
- microspheres TH22.101, TU35.110
- microsphere TH15.102
- microstructure TU36.108
- microsystems MO82.403, TU23.102, WE21.804, WE23.105
- microtechnology TU13.101
- microvalve TH25.103
- microwave device WE80.410
- microwave synthesis TU35.405
- microwave MO57.504, MO81.116, TU27.504
- miniaturized chemical processing WE21.604
- miniemulsion TU35.415
- Mississippi clean energy research TU50.150
- mist deposition TH12.202
- MIS TU28.302
- mixer TH45.203, TU41.604
- mobile devices TU13.101, TU50.159
- Mobile Devices WE48.107
- Mobile VoIP WE48.107
- mobility MO82.317, MO82.320, TU14.102, WE54.103, WE80.604
- mode approach TU41.802
- model parameter extraction WE14.102
- modeling of materials WE52.204
- modeling TU31.304, TU35.617, TU36.207, TU36.303, TU36.304, TU36.306, TU36.309, TU36.318, TU44.104, TU47.304, TU47.404, WE23.204, WE57.401, WE80.602
- modelling TH11.104
- model WE23.203, WE24.104, WE54.103, WE80.608, WE81.718
- molding TU50.152
- molecular coating MO81.514
- molecular device MO82.311
- molecular diagnostic TU28.307
- molecular dynamics pdms wetting TU35.610
- molecular dynamics simulation TU35.605, TU35.917
- molecular dynamics TU35.614, WE21.803, WE80.514, WE81.805, WE81.811
- molecular Dynamic TH45.101
- molecular electronics MO82.116, TU35.603
- molecular imaging MO35.102, MO81.312
- molecular machinery TH15.203
- molecular memories TU35.603
- molecular modeling WE21.403
- molecular modelling structure TU35.618
- molecular recognition MO81.204, TU21.302, WE21.704
- molecular scale WE11.402
- molecular simulation TH41.104, TU35.601
- molecular vapor deposition TU36.104
- molecular wiring WE57.402
- moleculasr dynamics TH11.101
- molecules MO81.524
- Molybdenum WE81.702
- monitoring of motion data TU50.179
- monitoring MO81.111, TH23.102
- mono-disperse nanoclusters TH21.203
- monoclonal antibodies WE48.206
- monocytes MO81.313
- monodendrons TU35.520
- monofunctional gold nanoparticles MO81.516
- monolayer TH21.302, TU35.917
- monolith TU47.404
- Monte Carlo methods TH23.104
- Monte Carlo simulation MO81.724, TU35.606
- Monte Carlo TU35.614, WE80.519
- monte-carlo TU35.802
- Montréal technology commercialization TU50.193
- morphological control MO82.218
- MOSFET parameter extraction WE44.104
- MOSFETS MO82.317
- MOSFETs MO82.320, TH23.105, TU30.403
- MOSFET TU14.101, TU24.101, TU30.402, TU44.104, WE14.102, WE54.101
- mosfet WE54.103
- MOSFET WE54.104, WE54.105, WE80.602
- MOST WE80.601
- motion equation TU36.209
- motion MO82.312
- motor WE82.208
- movable micro mobile WE53.101
- MRAM TU35.617
- MRI contrast agent WE80.105
- MRI/PET TH15.202
- MRI MO81.605, TH15.204, WE80.107, WE80.116
- MTT assay MO81.503
- MTT TU35.110
- mucosal TU45.108
- muiltifunctional polymeric nanoparticles MO81.511
- multi-bit/cell MO82.115
- multi-disciplinary MO82.404, MO82.406
- multi-electrode-array TH25.101
- multi-frequency WE41.606
- multi-functional MO81.111
- multi-gate MOSFET TU44.101
- multi-layered structure MO81.203
- multi-layers TU36.104
- multi-resolution characterization TU30.304
- multi-scale modeling TU35.411
- multi-stage processes TU35.619
- multi-stage WE41.606
- multi-steps kinetics of pH-equilibration MO81.203
- multi-wall carbon nanotubes MO81.714, WE41.804
- multi-walled carbon nanotubes WE80.320
- multi-walled carbon nanotube TU36.411
- multidisciplinary research on cancer imaging and therapy TU50.176
- multidisciplinary research TU26.107
- multifunctional WE80.116
- multilayers TH11.103
- multiphase flow WE80.206
- multiphysics WE80.224
- multiple myeloma WE48.207
- multiple particle tracking TU35.114
- multiple sclerosis WE28.303
- multiple-gate TU30.402
- multiplexing TH15.201
- multiscale modeling TH41.103
- multiscale WE42.201, WE51.601
- muscle contraction TU35.808
- mutation WE21.403
- MWCNTS TU35.405
- MWCNT TU35.412
- myelin MO25.202
- nano antenna WE57.202
- nano devices MO82.310
- nano electronics WE52.203
- nano films MO82.208
- nano grinding MO82.308
- nano initiative TU26.101
- Nano ion liquid TU35.910
- nano materials MO81.916
- nano optics MO82.128
- nano particles MO31.705
- nano particle MO82.206
- nano probe TH11.302
- nano pv WE57.205, WE81.102
- nano reactors MO82.310
- nano structured films MO81.902
- nano structures WE28.305
- nano tuned device MO82.105
- nano wire MO82.124
- nano-architecture MO82.307
- nano-biosensor MO81.109
- nano-cantilever MO81.112
- nano-circuit WE54.102
- nano-CT MO21.701
- nano-drug targeting WE80.114
- nano-electronics TU35.901, WE21.401
- nano-emulsion TH21.202
- nano-fabrication TH12.203, TU35.619
- nano-hybrid MO81.214
- nano-materials WE28.305
- nano-networks TU35.619
- nano-powders TU35.705
- nano-protein adducts TU35.808
- nano-scale heating TU36.001
- nano-scale MO81.725
- nano-structured materials WE21.401
- nano-structure MO81.725, MO82.305
- nano-systems WE21.401
- nano-total analysis systems WE21.604
- nano-transistor MO81.109
- nano-tube toners TU28.104
- nano/polymer coatings TU50.203
- nanobattery TH28.104, WE57.107
- nanobelts WE80.413
- nanobiology TU28.303
- nanobiomagnetite MO81.308
- nanobiomagnets TU35.106
- nanobioprobe TU35.822
- nanobiosensors TH15.105
- nanobiotechnology TU26.106, TU50.114
- nanobolometer TH42.102
- nanobrachytherapy MO81.520
- nanobullets TH15.202
- nanocatalyst MO27.401, TU28.206, WE28.403
- nanochannels MO57.501
- nanocluster MO81.302
- nanocoatings TH11.103, WE80.505
- nanocompartments MO81.218
- nanocomposite fibers TU36.018
- nanocomposite solar cells WE57.205
- nanocomposites MO31.706, MO81.513, MO81.818, TH41.103, TU35.515, TU35.815, TU35.816, TU36.009, TU36.020, WE21.502, WE21.505, WE22.105, WE51.301, WE80.320
- nanocomposite MO31.702, MO81.717, MO82.207, MO82.411, TH11.202, TH11.203, TH15.302, TH41.205, TU35.502, TU35.706, TU35.707, TU35.708, TU35.806, TU35.832, TU36.004, TU36.012, TU36.013, TU36.017, WE21.503, WE21.504, WE41.801, WE51.304, WE81.102, WE81.506
- nanocrystal structure morphology transmission electron microscopy MO81.901
- nanocrystaline metal oxides TU50.156
- nanocrystalline CoFe2O4 MO82.201
- nanocrystalline diamond MO31.803
- nanocrystalline Dy2O3 MO81.917
- nanocrystalline hydroxyapatite TU25.101
- nanocrystalline LiCoO2 MO82.214
- nanocrystalline transistor TU35.903
- nanocrystalline MO81.705
- nanocrystallites TU28.202
- nanocrystals MO82.216
- nanocrystal WE22.103
- nanoDAC TH25.306
- nanodeformation TH25.306
- nanodevice arrays TU25.206
- nanodevices WE80.105
- nanodevice MO81.520, MO81.526
- nanodiagnostics MO81.117
- nanodiamond MO81.803, TH25.301, TH28.202
- nanodimensional MO81.103
- nanodots MO82.106
- nanoelectronics MO82.116, MO82.403, TH28.105, TH28.106, TU35.604
- nanoelectronic MO81.122
- nanoencapsulation TH28.302, WE80.321
- nanofabrication MO81.305, TH12.204, TU21.303, TU21.504, TU25.103, TU41.804
- nanofab TU50.161
- nanofibers MO25.206, TU35.818, TU36.002, TU36.022, TU41.101, TU47.601
- nanofiber TU35.709, TU35.905, WE57.103
- nanofibres MO82.128, WE81.712
- nanofibrous scaffold MO81.212
- nanofillers TU36.019
- nanoflowers MO82.309
- nanoflows TH11.101
- nanofluid rheology WE80.207
- nanofluidic flow control WE21.604
- nanofluidics fluid flow transport carbon nanopipe enhanced nanotube WE80.202
- nanofluidics WE21.604, WE51.601, WE80.218, WE80.221
- nanofluidic WE80.225
- nanofluids TU35.810, WE80.323
- nanofluid WE81.508
- nanogaps MO82.122
- nanogap MO81.107
- nanogel MO81.213
- nanografting WE42.104
- nanogram detection TU35.915
- nanoholes TH22.101
- nanoimprint lithography MO82.314, TH22.105, TU35.919, WE42.106, WE52.103
- nanoimprinting TU35.117
- nanoindentaion TU35.708
- nanoindentation TH11.203, WE41.701, WE51.701
- nanoionics MO57.201
- nanolaminates TU36.104
- nanolawn TH25.303
- nanoliter MO81.613
- nanolithography TU35.917
- nanomachining TH42.101
- nanomanipulation TH12.201
- nanomanufacturing TU41.103, TU50.197, WE81.503
- nanomaterials MO31.204, MO81.712, MO81.713, MO81.720, TU48.206, WE81.915
- nanomaterial WE28.204
- nanomechanical testing TU41.104
- nanomechanics WE51.702
- nanomedicine TH25.202, TU35.113, WE55.205
- nanomembranes TU35.906
- nanometer powder TU36.114
- nanoneedle MO81.608
- nanoparticle assemblies TU35.804
- nanoparticle characterization MO21.704
- nanoparticle coatings TU41.104
- nanoparticle deposition TU35.825
- nanoparticle distribution TU35.816
- nanoparticle layers TU21.302
- nanoparticle size MO21.705
- nanoparticle synthesis WE80.215
- nanoparticle trageted drug delivery TU50.158
- nanoparticle-protein interactions TU35.807
- nanoparticles ocular TU35.111
- nanoparticles MO31.205, MO35.102, MO35.103, MO81.301, MO81.305, MO81.306, MO81.307, MO81.311, MO81.315, MO81.316, MO81.506, MO81.507, MO81.521, MO81.525, MO81.706, MO81.723, MO81.726, MO81.730
- Nanoparticles MO81.905
- nanoparticles MO81.907, MO82.202, MO82.211, MO82.213, MO82.215, MO82.308, MO82.309, MO82.312, TH12.102, TH15.104, TH15.204, TH21.201, TH21.301, TH21.303, TH22.102, TH25.205, TH28.302, TH41.106, TH41.202, TU15.103, TU30.303, TU35.103, TU35.104, TU35.120, TU35.202, TU35.302, TU35.303, TU35.415, TU35.502, TU35.506, TU35.509, TU35.701, TU35.709, TU35.810, TU35.813, TU35.824, TU35.828, TU35.831, TU35.916, TU36.016, TU36.020, TU36.109, TU36.111, TU41.204, TU41.504, TU45.106, TU50.163, WE21.301, WE42.101, WE42.102, WE48.206, WE51.203, WE51.302, WE51.402, WE57.102, WE80.110, WE80.115, WE80.123, WE80.309, WE80.315, WE80.323, WE81.503, WE81.504, WE81.718, WE81.810, WE81.915
- nanoparticle MO21.702, MO31.201, MO35.101, MO81.528, MO81.720, MO81.805, MO82.205, MO82.212, MO82.216, TH21.202, TH25.201, TH25.203, TH28.201, TH41.102, TH41.204, TU28.206, TU28.303, TU35.112, TU35.113, TU35.114, TU35.205, TU35.703, TU35.833, TU36.003, TU36.116, TU41.202, TU41.703, TU45.105, WE21.404, WE28.403, WE51.205, WE80.102, WE80.103, WE80.409, WE80.511
- nanoparticulate layers TU35.814
- nanoparticules WE51.204
- nanopartilces MO81.514
- nanopartterning WE80.512
- nanopartticles TU35.508
- nanopatterning WE22.105, WE42.104
- nanophotonics TH12.201, TU50.114
- nanopillars TH22.101
- Nanopipette TU35.910
- nanoplates TU35.824
- nanoporous alumina membrane MO81.610
- nanoporous alumina MO81.612
- nanoporous MO81.609, TH12.103, TH42.101, TU35.909, WE51.601
- nanopowders WE21.304
- nanopowder TU41.202
- nanoprobes WE55.202
- nanoprocessors MO82.116
- nanoribbon lithium TU35.908
- nanorods WE21.302, WE22.101, WE42.103, WE51.201
- nanorod TU41.203, WE80.409
- nanoscale architectuers TU50.112
- nanoscale bioconjugation WE21.704
- nanoscale characterization MO81.912
- nanoscale chemistry MO81.204
- nanoscale deposition TU21.504
- nanoscale dispensing WE21.602
- nanoscale lithography TU21.504
- nanoscale memories MO82.120
- nanoscale MOSFET with core-shell structure MO82.107
- nanoscale nozzle TU36.212
- nanoscale patterning TU36.212
- nanoscale thermal analysis WE21.703
- nanoscale transistor WE52.202
- nanoscaled brain stroke bypass MO25.204
- nanoscaled systems TU35.830
- nanoscale TH25.302, TH25.305, TU35.124, WE21.403
- nanoscience laboratry TU50.137
- nanoscience program TU50.125
- nanoscience TU35.619
- nanosensors MO81.813, TU25.201, TU35.918
- nanosensor MO81.115
- nanoshells TH28.206
- nanosilica TU35.817
- nanosize MO81.731
- nanospheres TU35.115, TU35.116
- nanosphere WE51.205
- nanostructured materials MO81.912
- nanostructured polymersomes TU21.201
- nanostructured silicates MO81.210
- nanostructured thin films WE57.102
- nanostructured vyhh coatings TU36.011
- nanostructured TU30.302
- nanostructures zeolites TU36.111
- nanostructures MO82.126, MO82.128, MO82.315, TU21.501, TU28.202, TU35.519, TU36.118, TU41.103, WE21.305, WE57.204, WE80.402, WE80.413
- nanostructure MO81.502, TH12.102, TH12.203, TH28.205, TU35.911, WE41.403, WE41.404, WE80.217
- nanosuspensions WE41.204
- nanosyringe TH45.104
- nanosystems MO82.403, TU50.114
- nanotechnologies WE42.201
- nanotechnology cleanroom TU26.107
- nanotechnology research commercialization TU50.162
- nanotechnology MO81.718, MO81.719, MO81.733
- Nanotechnology MO81.908
- nanotechnology MO82.402, MO82.403, MO82.404, MO82.405, MO82.406, TU21.101, TU26.101, TU26.104, TU27.302, TU28.106, TU30.502, TU35.702, WE11.402, WE28.101, WE28.204, WE28.305, WE42.203, WE53.102, WE58.303, WE81.915
- nanotechology MO81.734
- nanotextured coatings TU21.303
- nanothermal therapy WE80.110
- nanothermal WE41.701
- nanotopography TU25.103
- nanotoxicity of nanoparticles MO81.715
- nanotoxicity MO81.716, MO81.727, MO81.729
- nanotoxicology MO81.719, TH11.101
- nanotracers WE51.204
- nanotracer TH41.204
- nanotrapping TH12.201
- nanotriangles TU35.824
- nanotribology WE80.507
- nanotubes MO25.206, MO57.501, MO81.712, MO82.320, TH28.204, TU35.417, TU50.123, WE21.505, WE21.801, WE21.803, WE42.202
- nanotube MO81.810, TU35.402, TU35.404, TU35.413, TU35.615, WE21.504, WE21.804, WE80.501, WE80.502, WE80.503, WE80.504
- nanowire cathodes WE80.416
- nanowire decoders MO82.120
- nanowire transistors MO82.307
- nanowires MO81.129, MO82.304, TU23.104, TU25.203, TU50.123, WE41.301, WE41.302, WE42.103, WE51.201, WE80.411, WE80.412, WE80.414, WE80.415
- nanowire MO25.205, MO81.109, MO82.319, TH42.104, TU30.402, TU35.518, WE41.303, WE80.218, WE80.403, WE80.404, WE80.407, WE80.408, WE80.417, WE80.419, WE80.420
- nano TH11.104, TH28.304, TH45.102, TU26.105, WE57.205, WE80.201
- natural products WE81.716
- natural rubber MO31.702
- natural therapeutics TU50.106
- Navier-Stokes WE80.204
- navigation systems WE25.204
- NDE TU13.101
- near infrared MO81.208, WE80.104
- nearal TU23.105
- negative differential conductance TU35.404
- negative refraction MO82.109
- NEGF MO82.317
- neighbouring atoms TU35.614
- NEMA WE82.208
- NEMS MO82.403, TU35.615, TU36.316
- Nernst-Planck WE80.204
- nerve MO81.404
- nervous tissue MO81.726
- networks and infrastructure TU26.101
- networks TU36.405
- network TU36.003
- neural interfaces MO25.206
- neural interface TU23.105
- neural microelectrode MO25.206
- neural networks MO81.114
- neural network WE54.102
- neural progenitor cells TU35.310
- neuro-muscular communication TH25.101
- neuroinflammation MO81.313
- neuromuscular disorders WE28.303
- neuronal cells TU35.202
- neuronic impulses MO81.404
- neuron MO25.205
- neurotransmitter MO81.127
- neutrally buoyant WE28.105
- neutron MO81.908
- new bone tissue formation WE48.201
- new chemical entities WE48.204
- new drugs generation TU35.102
- new materials TU50.102, WE57.205
- new target WE48.204
- new ternary alloy WE80.501
- new ventures MO82.408
- NewEarth WE81.609
- NG108–15 nerve cell TU25.201
- NH3-SCR process WE81.709
- NH3 TH11.102
- NHL TU35.120
- nickel based composite coating TU35.809
- nickel doped SnO2 TU35.705
- Nickel eletroforming TU35.503
- nickel nanocomposites TU35.704
- nickel nanowires WE80.410
- nickel oxide WE57.103
- nickel/YSZ cermets MO57.202
- nickel MO82.215, TU35.506
- NIL resists MO81.906
- NIL WE42.106, WE52.102
- NIR emitting quantum dots TH45.105
- nir TH28.309
- nisin WE81.707
- nitinol TU36.202
- nitrate TH15.105, WE28.104
- nitric oxide MO81.725, MO82.412
- nitridation of TiO2 WE41.202
- nitrification WE28.104
- nitrogen removal WE81.908
- nitrogen WE81.912
- nitroimidazole TH15.202
- NLMS algorithm WE23.104
- NMT WE43.104
- NO amplifier MO82.412
- NO biosensor MO82.412
- noble metal MO81.315
- noise TU24.101
- non destructive testing TH25.305
- non linear dynamics TU36.316
- non PCR detection of DNA/RNA WE48.209
- non stoichiometric TU41.202
- non-charge-sheet approximation TU36.310
- non-classical MOS transistor TU36.310
- non-classical MOSFETs MO82.107
- non-condensing polymer MO81.517
- non-contact culture model MO81.729
- non-invasive MO81.116
- non-toxic drugs TU35.102
- non-uniform cluster growth WE80.211
- non-uniformly doped design WE80.606
- non-UV based room temperature process WE52.102
- Non-viral gene delivery TU35.201
- non-volatile memory MO81.704
- nondestructive evaluation TU13.101
- nonlinear dynamics TH23.101
- nonlinear WE43.103
- nonostructural deposition TU36.103
- novel composite membrane WE57.404
- novel nanocomposite structures TH41.201
- novel pro-apoptotic agent TU35.108
- NOx MO81.102, TU35.816, WE81.206
- NSET TH11.302
- nuclear medicine TH28.206
- nuclear spin MO82.310
- nucleate MO82.125
- nucleation MO82.204, TU35.518
- nucleic acids MO81.117
- NUDC TU24.102
- Numerical device simulation TH23.105
- numerical simulation TH13.102
- nutrient removal WE81.912
- nylon 6/6-6 WE80.319
- obesity TU45.102
- occupational health MO81.712, MO81.723
- odor MO81.705
- OFET MO82.118, WE48.106
- OH radical MO82.123
- Oil based polymers TU36.021
- oil sands TU28.204
- oil-repellent WE41.401
- OLED WE81.107
- oleophobic WE41.401
- olfactory sensing TU50.120
- oligonucleotides TU35.101, TU41.504
- olive oil MO81.701
- on-demand blending WE81.623
- on-line meter TU31.201
- on-site production TU50.191
- oncology WE28.301, WE80.110
- Ontario technology transfer TU50.113
- open ocean aquaculture TU50.138
- operations WE82.103
- ophthalmology TU28.306
- optic properties TU35.705
- optical absorption WE21.802
- optical anisotropy WE51.203
- optical applications WE28.305
- optical band gap MO81.916
- optical components TU50.124
- optical detection TH23.101
- optical interferometric readout TU36.205
- optical lithography TU35.401
- optical microscopy WE42.202
- optical nanostructures MO82.109
- optical power control WE42.203
- optical products TU50.203
- optical sensors MO81.108
- optical sensor TH25.104, WE80.413
- optical spectroscopy WE42.202
- optical switch TU36.206
- optical thin film sensor MO81.702
- optical waveguide TH21.302, TU25.204
- optics MO31.703, TU35.825, WE22.105
- optimal dispensing WE52.104
- optimization MO81.608, WE51.601, WE51.802
- optoelectronics WE80.420
- or medical instruments WE28.308
- oral siRNA delivery TU45.104
- organelle MO81.207
- organic agriculture WE81.716
- organic compounds WE28.201
- organic electronics MO82.103
- organic electronic WE48.106
- organic photovoltaic WE81.103
- organic semiconductor MO82.304, WE48.106
- organic solar cells WE22.102
- organic-inorganic TU36.020
- organoclay MO31.702
- organometallic MO82.215, TU35.506
- organosilica MO82.217
- orientation WE21.701
- oriented CNTs TU35.408
- orthopedic applications MO81.513
- oscillator TU35.615
- osseointegration WE80.501, WE80.502
- other TU49.105
- outreach MO82.404
- ovarian cancer WE48.207
- overexpression WE81.602
- Oxidation number WE81.702
- oxidation TU36.305, WE81.708
- oxides TU30.302
- oxido reductases TH28.307
- Oxy-Acetylene Flame TU35.414
- oxygen nanostimulation MO82.121
- oxygen plasma WE80.506
- P-type MO81.903
- package vibrations TH13.103
- packaged meats WE28.308
- Packaged products carry microbial contamination from pre-packaging contamination hazards WE28.308
- packaging TU23.102, TU23.104, WE80.310
- paclitaxel palmitate WE48.206
- paclitaxel WE80.120
- paint formulation WE82.303
- palladium MO82.122, TU35.815, TU35.831
- palmprint authentication TH28.101
- PAMAM dendrimers TU35.907
- PAMAM dendrimer TU35.113
- PAMAM denrimer MO81.526
- PAMAM MO81.527
- Pancreatic cancer MO31.704
- paperboard WE80.310
- parabolic chip TH25.104
- paramagnetic TU35.106
- parameter extraction TU36.309
- parameter WE24.104
- parasitic BJT WE44.103
- PARC TU50.165
- paromomycin TU35.115
- particle characterization TU50.149
- particle cluster WE80.211
- particle dynamics TH13.101
- particle fabrication WE80.206
- particle morphology WE41.703
- particle physical properties MO21.704
- particle segregation WE41.604
- particle size distribution MO21.704, WE81.812
- particle swarm optimization WE44.104
- particle transport WE80.221
- particulate emissions WE81.712
- partnerships MO82.408
- partnership MO82.207, MO82.411, TU27.603, WE82.105
- Parylene-C TU41.803
- parylene WE41.803
- passive filters WE81.902
- patent and trademark searches TU50.147
- patenting TU30.502
- Patents TU27.601
- patents TU50.132
- patent MO82.407
- patient-specific WE25.204, WE55.203
- patterned substrate TH11.104
- patterned MO81.205
- patterning TU35.901, WE21.603, WE42.101
- PCM WE44.101
- PCR product MO81.123
- PCR TU25.205
- PDMS WE21.601
- pdms WE80.213
- Pd MO82.202
- PECVD TU35.408
- pecvd WE80.507
- PEDOT WE48.106
- peel off WE43.101
- PEG-PE micelles TU35.108
- PEGylation TH21.301
- PEG MO81.204, TU35.112, TU35.113, TU41.202, WE80.305
- pellets MO27.201
- PEMFC WE28.207
- PEM WE28.207
- penetration MO81.723
- Pennsylvania research TU50.185
- peptide nano tubes TU28.203
- peptide nucleic acid TH25.205
- peptides TH28.307
- peptide TU28.303, TU35.107, WE80.109
- perborate TH28.302
- percarbonate TH28.302
- percolation WE41.801
- performance MO31.706, MO82.102, TU31.201, WE81.806
- periodicity TH12.203
- periodontal ligament cell MO81.216
- periodontal regeneration MO81.216
- peristaltic micropump WE41.601
- permeability WE41.702
- peroxidase MO81.307
- personal rapid transit. vehicle control WE82.302
- personal TU36.405
- personnel TH28.206, TU36.405
- pesticides MO81.101
- PET TU35.515, WE28.301
- phage display hydroxyapatite TU35.304
- phage display WE25.201, WE55.202
- phage imaging WE25.205
- phage libraries TU35.303
- phage microarray TU35.301
- phage particles WE25.203, WE45.203
- phage probes TU35.308, WE55.203
- phage-based WE25.204, WE45.204
- phage-derived vehicles WE45.201
- phage-templated synthesis WE45.202
- phage MO81.126, TU35.306
- Phage TU35.309
- phage TU35.310, TU35.314
- pharamaceuticals TH28.304
- pharmaceutical materials TU35.124
- pharmaceuticals TH28.307, TU48.401, TU48.402, TU48.403, TU48.404, TU48.405, TU48.406, TU49.401, TU49.402, TU49.403, TU49.404, TU49.405, WE57.801, WE57.803, WE57.804
- pharmaceutical MO81.125, WE81.914
- pharmacokinetics MO81.712, WE55.204, WE80.122
- pharmacy education MO82.405
- pharma WE48.101
- phase changed memory MO82.316
- phase separation TH11.104
- phase shift WE51.702
- phase-change memory TU36.109, WE44.101
- phase-change WE80.222
- PHEV TU28.202, TU47.405
- phonon-assisted tunnelling WE80.411
- phononic crystals TU36.208
- phosphate TH15.105
- phospholipid TU21.503
- phosphonate TU41.202
- phosphopeptide MO81.316
- photo-oxidation TU35.313
- photo-platinization TH21.203
- photoacoustic tomagraphy WE51.205
- photoactivity MO27.301, TU35.516
- photocatalysis WE80.306
- photocatalysts WE41.202
- photocatalyst TU28.106
- photocatalytic activity MO81.710
- photochemical TU31.502
- photocnanocomposite TH11.303
- photoconversion TU31.303
- photocuring MO81.906
- photodiagnosis WE80.109
- photodynamic medicine WE80.103
- photodynamic therapy TU15.103, WE80.109, WE80.112, WE80.113, WE80.123
- Photodynamic WE28.301
- photofermentation WE81.612
- photoluminescence WE80.402
- photoluminescent WE80.309
- photomechanical actuation WE21.804
- photomechanical therapy MO81.520
- photonic band-gap MO81.124
- photonic crystals MO82.109
- photonic lattice TH12.203
- photonics WE42.201
- photonic MO31.703, MO81.121
- photosensitizer TU15.103, WE80.109, WE80.112, WE80.113
- photosynthesis MO57.502
- photothermal therapy MO81.516
- photovoltaic cells WE28.305
- photovoltaic cell TU28.105
- photovoltaics TU28.103, TU31.204, TU47.601, WE81.102
- photovoltaic TU28.106, TU31.201, WE57.205
- photsynthesis TH28.306, TU28.205
- physi-sorption TU35.519
- physical properties TU36.006
- Physico-chemical characterization TU35.115
- physics based modeling TU36.306
- phytochemicals WE81.620
- pH MO81.112, WE81.701
- pi-pi interaction TU15.104
- pickup coil MO81.404
- picoliter MO81.613
- picoscale MO81.524, TU35.808
- picotechnology MO81.524, TU35.808
- PID TU36.402
- piezoelectric MO82.401
- piezoresistive properties MO81.920
- piezoresistive TU36.211, TU36.319
- piezoresistivity MO81.903
- piezo TU36.322
- pigment TU35.819
- PJFF WE81.712
- planing boat WE82.301
- plasma enhanced deposition TU36.105
- plasma treatment TU31.303
- plasma TU35.803
- Plasmid DNA TU35.201
- plasmon resonance WE41.301
- Plasmonic surfaces TU21.502
- plasmon MO82.209, TU36.408
- plastics additives WE28.405
- plate-shaped nanoparticles TU35.821
- platform TU28.302
- plating MO81.911
- platinum nanoparticles TU35.514
- platinum TU35.410, TU47.404
- Platinum WE21.303
- PLA TU35.116
- PLGA TU35.112, TU35.115, TU35.120
- PLGS WE41.204
- plug-in hybrid TU47.403
- plug-in vehicles advocacy TU50.167
- Plug-in-Hybrid WE82.304
- pluripotent stem cells WE55.202
- PMN-PT TU36.409
- PMP-MOCVD MO82.204
- pmrs TU31.201
- PMSF TU25.201
- PN diode WE44.101
- PNA TH25.205, WE21.404
- point of care TH25.104
- point-of-care MO81.129
- poiseuille MO81.913
- Poisson-Boltzmann WE80.204
- polarization MO82.111
- policy recommendation TU26.108
- policy MO81.734, WE82.104, WE82.115
- pollutants MO81.708
- pollution prevention MO27.402
- pollution reduction WE82.301
- poly(ethylene oxide)-b-polycaprolactone (PEO-b-PCL) diblock copolymers TU21.201
- poly(o-anisidine) WE23.202
- poly(o-toluidine) TU36.010
- poly(p-xylylene) MO25.102
- poly(trimethylsilyl propyne) TH11.202
- poly-(p-xylylene) TU25.202
- polyacrylic acid MO81.612
- polyamide TU36.006, WE80.302
- polyamines TU35.827
- polyaniline based composites TU35.406
- polyaniline TU35.407, TU36.002
- polycaprolactone MO81.212, MO81.214, MO81.216
- polyethylene glycol-phosphatidyl ethanolamine WE80.120
- polyethylene glycol TU35.707, WE80.109
- polyethylenimine TU35.206
- polyhydroxyalkanoates MO27.404
- polyhydroxybutyrate TU47.302
- polyimide TU36.012
- polylactic acid (PLA) TU36.014, TU36.016
- polymer architecture TU21.202
- polymer blends WE81.506
- polymer dynamics TU21.204
- polymer flow WE80.221
- polymer hetrostructure tandem solar cells WE57.201
- polymer magnets WE43.102
- polymer nanocomposites MO81.816
- polymer nanocomposite MO81.102
- polymer nanostructures WE21.702
- polymer replication TU35.503
- polymer sustainability TU31.504
- polymer-stabilized WE81.504
- polymere electronic WE48.106
- polymeric micelles WE80.107
- polymerization WE28.404
- polymers MO31.103, MO37.303, TH28.201, TH41.103, TH41.202, TU35.412, WE21.505, WE28.401, WE41.204
- polymer MO31.201, MO81.812, MO82.114, TH41.102, TH41.204, TU30.303, TU35.703, TU35.707, TU35.815, TU36.007, WE48.205, WE51.304, WE80.218, WE80.409
- PolyMUMPS WE23.101
- polyoxometalate composite WE81.808
- polyoxometalate MO81.804
- polypropylene WE80.320
- polysaccharide TU35.103
- polystyrene MO81.607
- polytronic WE48.106
- polyurethane- nanoclay composite fiber TU36.018
- polyurethane MO31.706, TU36.009
- pompe disease MO81.401
- pore MO81.106
- porous metal TU36.113
- porous nanoscale materials TU50.157
- porous silicon MO57.203
- porous MO81.913, TU35.834
- porphyrins TU35.913
- portable devices WE28.206
- portable power WE81.813
- portable Raman sensor MO81.701
- portable WE11.401
- POSS TU36.006, WE80.302, WE80.303
- post-annealing effect WE81.107
- postproduction annealing treatment WE81.103
- potential of mean force TH41.104
- Potential profiles MO82.317
- potential MO81.311
- poultry WE28.308
- powder injection molding WE80.215
- power generation MO57.402, TU28.101
- power MOSFET TU36.311
- power quality WE81.902
- power MO37.504, TU28.201, WE57.107, WE81.403
- PP/Clay nanocomposities TU35.504
- PPG WE80.305
- PPY TU35.501
- pre-amorphization implant MO82.108
- precipitation MO31.205
- preconcentration WE80.225
- precursor nano-structures TU21.101
- premium WE82.208
- pressing WE80.513
- pressure sensor MO81.105
- pressure MO81.807, WE23.103
- pretreatment WE81.621
- prevalence WE81.711
- primer WE80.509
- printing TU50.152, WE21.603
- PRINT TU45.106
- probability TU35.608
- procee-aware extraction TU14.104
- process model TU36.302
- process monitoring WE48.202
- process optimization TU36.302
- process variability TU14.104, WE80.609
- process variations TU24.103
- process variation WE52.202
- processing platforms MO82.102
- processing MO81.730, MO82.103
- process TH11.204, TH28.201, WE21.304
- producer responsibility WE82.117
- produce WE28.308
- product lifecycle MO81.717
- product model TU36.302
- product safety MO81.735
- product sustainability WE82.117
- production cost reduction WE81.604
- production WE21.304
- professional society TU50.145
- progenitors WE55.202
- programmable microwave heating TU25.205
- proof mass TU36.301
- properties MO82.129, TH41.105, TU11.102
- prosecution TU30.502
- prostate cancer TU35.307
- prosthetics WE48.102, WE48.103
- protection filter WE42.203
- protection TH28.206
- protein arrays WE21.401
- protein array MO81.201
- protein biochip WE80.108
- protein carbohydrate recognition MO81.523
- protein crosslinking TU35.618
- protein microarrays TU35.301
- protein separations TU35.906
- proteines TH28.307, WE48.208
- proteins MO81.129, MO81.609, TU35.909, TU41.102
- protein MO81.607, TH15.203, WE42.102
- proteomics TH11.301, WE80.101
- proton conducting WE28.207
- proton conductor WE81.809
- proton diffusivities MO81.203
- proton exchange membrane TH12.103
- proton exchange WE28.207
- proton-conducting polymer TU36.118
- PS1 TU28.105
- PSAf WE80.108
- PSAt WE80.108
- PSA WE80.108
- PSP WE14.103
- PSt TU36.008
- Pt nanoparticles WE81.709
- PTMSP WE41.702
- public engagement TU26.108
- public opinion WE82.108
- public policy MO37.401, WE82.108
- public sector MO81.735
- public WE82.105
- pulmonary TU45.108
- pulp production WE28.207
- Pulse amplitude WE80.605
- Pulse delay WE80.605
- Pulse width WE80.605
- pulsed gas TU35.803
- pulsed laser deposition TU35.522
- pumping WE81.105
- Purdue TU26.107
- purification MO81.614, MO81.804, TU36.115
- PV module WE81.105
- pv powered TU31.201
- PV systems TU47.602
- PVA TU36.008
- PVC MO37.302
- PVDF TU36.023
- PVP polymer WE80.511
- PV WE57.205
- pv WE81.102
- PWM inverters WE81.902
- PWM TU36.402
- pyrolysis TH42.104, TU35.412
- pyrolytic synthesis TU36.102
- pyrophoric nanoparticles WE51.201
- pyrosequencing TU35.121
- PZT TU36.403
- pzt WE57.203
- QCM-D TU30.303
- Qdot MO25.201
- QD MO82.216
- QM/MM TH11.102
- quadruplex WE21.404
- quality control MO21.704
- quality factor (Q) TU36.407
- quality MO81.910
- quantum bits TU36.106
- quantum chemistry MO82.123, WE81.810
- quantum confinement WE80.603
- quantum corrections TU35.613
- quantum dot nanocrystals MO25.203
- quantum dots MO81.309, MO81.310, MO81.311, MO82.113, WE55.202, WE80.106
- quantum dot MO25.201, MO81.302, MO81.303, MO82.105, TH15.201, TH15.205, TH21.204
- quantum effects WE54.101
- quantum efficiency WE28.102
- quantum fourier transform MO82.104
- quantum gates TU36.106
- quantum information theory TU35.607
- quantum mechanical effect TU30.403
- quantum transport WE51.801
- quantum-dot cellular automata MO82.117
- quantun dots WE80.104
- quartz MO81.115
- Quasi-2D TU30.404
- Quebec development TU50.155
- Quebec research TU50.194
- radiation oncology TH28.206
- radiation TU47.602
- radical synthetic approach MO81.708
- radiochemical purity MO81.128
- radioprotection TH45.103
- Raman imaging TU35.904
- Raman scattering MO81.919
- Raman Spectroscopy MO81.915
- Raman spectroscopy TU35.915
- raman spectroscopy TU36.117
- Raman spectroscopy WE21.801, WE42.202
- Raman TU35.404
- random dopant WE52.202
- random) MO81.205
- Random MO57.404
- rankine MO57.402
- rapid identification MO81.701
- rapid product realization methodology WE82.203
- rare earth MO81.208
- ratchet WE80.203
- RDF WE81.613
- REACH WE82.117
- reactive facets MO82.218
- reactive milling MO81.918
- read head TH28.102
- readaptation device WE28.303
- real-time estimation TH23.102
- real-time metering WE82.209
- rebate TU31.202
- recessed channel MO82.115
- recombinant Escherichia coli MO27.404
- recovery/recycling WE28.103
- recycle TU27.304
- recycling TU47.303
- red biotechnology TH28.307, WE48.208
- red blood cells WE80.214
- redispersible TU41.202
- reduce emissions TU28.207
- reducing agents TU35.512
- reducing business risk WE82.114
- reducing weight TH41.202
- refinery MO57.304
- reformation WE81.801
- reformer WE81.803
- reforming anode WE57.401
- refractive index TH41.205
- refractories TU31.304
- refrigeration TU27.301
- regional WE81.711
- regulation MO81.733, MO81.734, WE81.605, WE82.108
- regulatory restrictions MO81.722
- regulatory MO81.732
- regulator TU26.105
- reinforce TU36.008
- relaxed sige TU36.305
- release etch TU36.213
- reliability MO81.910, MO82.310, TU36.320
- remediation WE28.104
- removal WE81.701
- renewable energy consulting TU50.187
- renewable energy research and development TU50.151
- renewable energy research WE81.619
- renewable energy technologies WE82.101
- renewable energy MO57.303, TU27.602, TU50.102, TU50.188, WE81.603, WE81.607, WE81.613
- renewable power sources TU50.122
- renewable resources WE81.614
- renewables MO27.304, TU31.301
- renewable TU27.506, TU31.302
- Rensselaer technology commercialization TU50.174
- research and development TU50.196
- research TU50.161, TU50.165
- residual stress measurement TH25.306
- residual stress TH25.302
- residual thickness WE42.106
- resistance measurement WE51.801
- resolution MO25.205
- resonance TH23.101
- resonators TU36.407
- resonator TU36.316
- resource intensive industries WE82.114
- resource WE81.719
- respiratory WE81.711
- responsive particles TU35.914
- responsive MO31.103
- restenosis TH25.203
- Resveratrol WE48.201
- retroreflector TH15.101
- retrovirus MO81.215
- reuse WE81.906
- RF MEMS TU36.207, TU36.320, WE23.201, WE23.203
- rf MEMS WE23.204
- RFID WE48.106
- RF TU23.102, TU36.307
- rheology TU35.504, WE80.218
- Rhodamine B Isothiocyanate WE51.202
- rice husk WE81.706
- ring oscillator WE44.102
- ring-pin TU21.302
- RIP140 TU45.102
- risk assessment MO81.712, MO81.717
- rms voltage WE23.204
- RNAi TU35.123
- RNA MO25.103
- Robotic Arm TU36.412
- robot TU28.302, TU36.202
- ROC-analysis WE80.108
- rod pairs TU35.804
- RoHS WE82.117
- ROIE TU31.501
- ROI TU31.501
- rooftop mounting WE81.201
- ROS TH11.301
- rotor WE82.208
- roughness TH45.102, WE41.402
- RRM2 TU45.105
- RSV MO81.525
- RTK TU41.502
- RTS noise model WE80.605
- rural women WE82.101
- ruthenium TU35.831
- Sabalan WE81.204
- sacrificial oxide TU36.213
- safety TH11.304, TH21.304, TU36.405, WE28.201
- salinity control TU50.135
- SAM TU41.505
- Sandia TU26.107
- sanitizing TU50.186
- SANS MO81.908
- Santa Clara University research TU50.177
- SAN TU36.017
- saturated water vapor pressure WE81.812
- saturation WE54.103
- SAXS MO81.908, WE42.103
- scaffold mechanical behavior MO81.205
- scaffolds MO81.213, MO81.513
- scale-up MO81.614
- scaled-up TU21.203
- Scaling MO82.317
- Scanning Electron Microscopy (SEM) MO82.303
- Scanning electron Microscopy TU35.510, TU35.511
- scanning electron microscopy TU35.915
- scanning probe lithography TU21.504
- scanning probe microscopy TH11.203, TU21.501, TU21.504, WE41.705
- scanning probe nanolithography TU21.501
- scattering MO82.320
- Schottky barrier TU30.404
- scratch resistance WE41.402
- screw WE48.203
- scrubbers WE28.103
- scrubbing WE81.402
- SCR WE81.708
- sculptured thin film MO82.111
- sealants WE48.205
- secondary amine TU45.108
- secure hardware WE48.105
- security TU36.405, WE28.402, WE48.105, WE80.309
- sediments MO81.720
- seed capital TU27.603
- segregation TH22.104, TU36.115
- SELDI TU25.206
- selective growth WE51.704
- selective product recovery MO81.218
- selectivity MO81.104, TU35.301, WE80.112, WE80.113
- self assemblage WE25.203
- self assembled monolayer TU41.505
- self assembly virgin materials MO82.119
- self assembly WE23.102
- self diffusivity TU36.306
- self-assembled colloidal nanostructures MO31.101
- self-assembled monolayers TU35.601, TU36.104, WE42.104
- self-assembled monolayer MO81.112
- self-assembly MO25.202, MO81.305, MO82.112, TH12.102, TU11.102, TU21.201, TU21.204, TU21.303, TU25.102, TU35.819, TU35.914, TU41.103, TU48.206, WE21.401, WE21.404, WE21.702, WE41.203, WE41.704, WE57.102, WE80.121, WE80.313, WE80.318, WE81.503
- self-cleaning WE11.301, WE82.204
- self-decontaminating WE11.301
- self-doped polyaniline MO81.801
- self-driven vehicle WE53.101
- self-lubricity TU35.809
- self-organization TU35.619
- self-propulsion WE80.203
- self-repair TU35.608
- self-replication TU35.619
- selling TU26.105
- SEM FIM automated serial section MO81.402
- SEM in combination with image analysis WE51.706
- SEM-EDS MO82.201
- SEM. EDX MO81.917
- semiconductor fabrication MO81.704
- semiconductor nanowires TU36.107
- semiconductor packaging TU50.183
- semiconductor-liquid junction MO82.203
- semiconductor MO82.213, TU28.103, TU31.302, TU35.826, WE41.304, WE48.101, WE80.404, WE80.406, WE80.409
- semicrystaline TU36.007
- SEM MO82.214, TU35.501, TU35.510, TU35.511, TU36.117
- senor TU36.405
- sensing margin MO82.115
- sensing MO82.118
- sensitivity TU35.301
- sensors and systems TU50.172
- sensors MO81.102, MO81.920, MO82.119, TH28.203, TH28.204, TU13.101, TU13.101, TU35.411, TU35.918, WE22.105, WE42.101, WE53.102
- sensor MO81.113, MO81.116, MO81.607
- Sensor MO82.318
- sensor TH28.103, TU35.816, TU36.409, TU36.410, WE23.103, WE41.303, WE48.101, WE53.103, WE80.510
- separations TU35.417
- separator WE80.515
- separtor TU35.805
- seperation TU35.908
- sequestration MO27.202, WE81.402
- serial bideposition MO82.111
- SERRS MO81.314
- SERS/SERRS TU21.502
- SERS MO25.102, MO81.915, MO82.209, WE51.202
- serum MO81.316
- services MO82.401
- service TU31.201
- shape memory alloy (SMA) spring TU36.402
- SHAPE TU35.512
- shape TU41.703
- shear flow TH41.105
- shear thickening fluid WE51.302
- shear TU35.515, WE21.701, WE80.315
- sheath TU35.413
- shell MO82.409
- shielding WE80.309
- shift gearbox WE81.717
- ship hull WE82.303
- ship WE81.717
- SHI MO82.105, TU35.501
- short channel effects WE80.606
- short-channel effects MO82.101
- short-strand RNA WE21.402
- shredding WE81.615
- shrinkage TU36.013
- Si nano-wires TU36.105
- Si technology WE28.206
- Si-C nanocomposite WE57.101
- SIBC MO82.110
- side channel attacks WE48.105
- SiGe HBT WE24.101
- sige TU36.305, TU36.306
- SiGe TU36.311, TU36.315
- signal amplification MO81.307
- signal cascades TU35.619
- signaling MO81.714
- silanes WE41.405
- silane WE51.302
- silica nano-particle MO81.304
- silica sol-gel WE80.518
- silica-alumina monoliths WE80.304
- silicalite membrane TU36.404
- silica MO81.124, MO82.205, TH11.202, TH21.301, TH41.204, TU35.707, TU35.827, TU36.017, TU36.020, WE41.403, WE42.105, WE48.101, WE80.509
- silicon carbide MO31.705, TU35.809
- silicon dioxide nanoparticles MO81.715
- silicon germanium TU36.304, TU36.305, TU36.306
- silicon high temperature annealing TU36.110
- silicon nanoparticles TU35.803
- silicon nanowire (SiNW) WE80.418
- silicon nanowires MO81.903
- silicon nitride WE51.702
- silicon on ceramic TU23.101
- silicon on insulator MO82.109
- silicon oxide WE80.407
- silicon MO81.101, MO82.304, TU28.103, TU31.203, TU36.113, TU36.303, WE41.302, WE80.415
- siloxane MO81.214
- silver colloid MO82.209
- silver nanoparticles TU35.818
- silver nanoparticle MO81.503, MO81.518
- Silver Nanoparticle TU36.021
- silver nanoparticle WE80.317
- silver nanotubes MO25.204
- silvered ceramic filter MO57.004
- silver MO31.201, MO81.507, MO81.525, MO81.721, TH21.201, TU36.003
- silylation TH42.103
- simulations WE81.810
- simulation MO81.302, MO82.104, TH13.104, TH41.102, TU35.619, TU36.106, TU36.207, TU36.320, WE51.603, WE51.605, WE80.608
- single crystal MO82.218, TH42.106
- single electron transistors MO81.122
- single molecular force spectroscopy MO81.914
- single molecule TU35.311
- single wall carbon nanotube TU35.409
- single walled carbon nanotubes MO81.801
- Single-electron tunneling TH42.105
- single-molecule manipulation TU35.602
- singlewalled carbon nanotube MO31.802
- sintering TU35.701, WE42.101
- SiO2 TU35.701, WE80.601
- siRNA delivery TU35.205
- siRNAs TU35.123
- siRNA MO81.511, TU35.201, TU35.203, TU35.206, TU45.103, TU45.105, TU45.106, WE80.116
- Sirtuin WE48.201
- site-directed chemical modification WE45.203
- size reduction MO82.210, WE81.615
- size-dependency MO81.505
- size TU35.803, TU41.702, TU41.703, WE80.205
- Si TH12.101, WE80.601
- slag TU31.304
- slip-flow WE80.224
- SMAA MO81.718
- small amplitude WE80.508
- small hydro power plants WE81.207
- small wind industry TU50.140
- small wind WE81.201
- smaller TU31.501
- smart glass TU27.303
- smart grid MO37.401
- smart implants TU36.215
- smart plastic TU35.903
- smart structures TU35.914
- smart systems WE23.105
- smart WE28.404
- SMA TU36.202
- SnO2 WE23.202, WE80.411
- SNR MO81.603
- SO2 sensor TU35.815
- soalr energy TU28.103
- SOA WE80.608
- social implications TU26.108
- social-interest green housing WE82.203
- SOD1 TU45.102
- soft lithography TH12.203
- soft matter WE41.101
- soft ware WE81.805
- softening TH23.101
- software TH28.308
- SOI MOSFET MO82.101
- SOI technology WE44.103
- SOI MO82.109, TU24.104, TU36.208, TU44.104
- sol-gel process WE41.402
- sol-gel technology WE80.308
- sol-gel MO82.128, MO82.215, MO82.217, MO82.301, TU35.508, TU35.832, WE80.305
- solar cells TH28.203, TU28.103
- solar efficiency TU28.105
- solar electric vehicle WE81.106
- solar energy TU28.101, WE81.104, WE82.112
- solar hydrogen TU31.302
- solar light pipe WE82.207
- solar thermal TU28.102
- solar-powered waste compaction system TU50.111
- solar MO27.304, MO57.303, TU27.602, TU31.201, TU31.202, TU31.204, TU31.301, WE51.402, WE57.202, WE57.203, WE57.205, WE81.102, WE81.205
- solica MO81.121
- solid drug nanospheres MO81.514
- solid oxide fuel cells (SOFCs) WE81.807
- Solid oxide fuel cell MO57.202
- solid oxide fuel cell WE28.206, WE81.808
- solid oxide membrane WE81.622
- solid solution MO81.104
- solid state lighting WE28.101
- solid-liquid-solid (SLS) mechanism WE80.418
- solid-oxide fuel cells WE42.101
- solid-state TU36.319
- solid TU35.606
- solubilization MO81.804, TU35.403, WE80.318, WE81.812
- solvent effects TH41.104
- solvent-thermal method TU36.114
- solventless MO27.403
- sonication WE80.318
- sonochemistry WE81.502
- SONOS MO82.115
- SON TU36.312
- sorbents WE81.903, WE81.915
- source reduction MO27.402
- SOx TU35.816
- Soybean whey WE81.707
- sp2/sp3 chemical mapping MO31.803
- space access and reentry TU28.207
- spasticity WE28.303
- spatial correlations TU24.103
- specialty polymer TU36.005
- specificity TU35.301
- spectre WE80.608
- spectrometer TU50.154
- spectroscopic ellipsometry WE51.203
- spectroscopy MO81.209, MO81.803
- SPECT WE28.301
- spent coffee grounds WE81.603
- SPICE models TU24.103
- spin biochemistry MO82.310
- spin coating MO57.203
- spin out MO82.407, WE41.201
- spin valve MO82.316
- spinal cord injury WE28.303
- spinning disc processor TU21.203
- spinodal TH11.104, TU21.104
- spintronics TU35.609
- SPIO WE80.116
- splitting-water TU27.503
- SPL TU21.504
- SPM MO81.915, TU21.504, WE41.703
- spray drying MO31.205
- spraying MO81.213
- spray MO81.808
- spreading TU25.204, WE80.205
- spring TU36.301
- SPR MO81.116, WE28.304, WE80.510
- stab resistance WE51.302
- stability TU35.407, TU36.204, TU36.307, WE21.403, WE41.102, WE80.316, WE81.802
- stakeholder engagement WE82.114
- standards TH11.304, TH21.304, TU50.161
- standoff MO81.113
- Staphylocuccus aureus MO81.304
- starch TU35.916, WE81.722
- startups WE82.210
- State government MO81.735
- state MO81.732
- statistical models TU24.103
- statistical SPICE Models WE80.609
- steam purification MO31.804
- steel substrate TU47.603
- steel MO57.504
- steerable needles TU28.301
- stem cells TU25.204
- stencil mask MO82.316
- stenciling TU50.152
- stent TH25.203
- step/flash nanoimprint lithography WE52.104
- steric TU35.203
- sterilization TU35.606
- sterilizing packaged products TU50.186
- stiffness WE51.701
- stimuli-responsive TU35.117
- STM-STS MO82.304
- storage MO27.202
- strain effects WE52.204
- strain sensor TU36.211
- strain-induced crystallization MO31.702
- Strained silicon MO82.313
- strained Si TU36.311
- strained-silicon MO82.101
- strain TH25.302, TU14.102, TU36.305
- strategy WE82.110
- streaming potential WE80.225
- stress analysis TU47.602
- stress and age related injuries will be a growing area requiring diagnosis and treatment. A sensor to enable rapid and inexpensive detection of microfractures could be a great resource to determine activity schedules for high-risk patients WE28.307
- stress distribution MO82.314
- stress TU36.322
- stroke WE28.303
- structural health monitoring TU36.211
- structure determination MO82.302
- structure-development TU36.009
- Structure MO81.919
- structure MO82.118, WE21.403
- sturcture WE25.202
- Styrene TU36.021
- sub-micron TH45.102
- sub-millimeter TU36.319
- sub-wavelength particle trapping TH12.201
- subcellular fractionation MO81.207
- subsonic TU28.207
- subsurface flow WE81.705
- such as product mishandling and cross-contamination prior to packaging. For example WE28.308
- sugar cane MO37.204
- SuMBE growth MO82.118
- super critical gas processes MO31.205
- super lattice TU36.304
- supercapacitors WE57.105
- supercapacitor WE81.505
- superconducting field-effect transistor (SuFET) MO81.404
- Supercritical Fluids MO81.905
- Supercritical water MO57.202
- superhydrophobic nozzle WE80.506
- superhydrophobic WE41.401, WE41.403, WE41.404
- superoleophobic WE41.401
- superparamagnetic nanoparticles TU35.812
- superparamagnetic nanoparticle TH15.205
- Superparamagnetism MO82.208
- superparamagnetism TU35.507
- supersonic TU28.207
- supported bilayer lipid membrane TU35.907
- supported lipid bilayers TU41.502
- supra-nano-structured WE51.303
- surface acoustic wave filter TU36.406
- surface acoustic wave MO81.807
- surface analysis TU35.518
- surface chemistry TU41.201, WE81.810
- surface coating TH45.105
- surface conduction electron-emitter MO82.122
- surface display TH28.307
- surface elasticity TH11.105
- surface energy MO82.218, WE80.507
- surface filtration WE81.713
- surface fonctionalization WE51.204
- surface functionalization TH41.204
- surface modification MO81.118, MO81.522, WE21.505, WE80.111
- surface morphology TU30.304
- surface nanostructures TU21.303
- surface patterning WE80.514
- surface plasmon resonance WE28.304
- surface plasmon WE22.102
- surface potential based WE80.607
- surface potential model TU36.310
- surface potential TU44.103
- surface roughness WE80.516
- surface segregation MO21.702
- surface stress TH11.105
- surface-channel WE24.102
- surface-enhanced Raman scattering TU15.103
- surface-potential models TU35.613
- surfaces WE11.301
- surfactants TH41.104, TU35.105, TU35.916
- surfactant MO81.604, WE42.105
- surgical instrument TU28.301
- surrounding gate MOSFET WE80.606
- surrounding-gate MOSFETs TU36.310
- surrounding-gate MOSFET TU36.308
- surviving rate of cells WE41.604
- suspension TH41.106
- sustaiable development WE81.614
- sustainability MO27.402, MO37.303, MO57.303, MO81.709, WE81.704, WE82.107, WE82.114, WE82.201
- sustainable development WE81.207, WE81.613, WE82.101
- sustainable engineering WE81.614
- sustainable technology WE82.110
- sustainable water designs TU50.119
- sustainable MO37.304, WE82.202, WE82.204
- SWCNTs TU28.101
- SWCNT MO81.808
- swcnt MO81.817
- SWCNT TU35.604, WE80.401
- swelling TU35.505
- switches TH28.106
- switch TU36.320
- SWNT networks TU41.803
- SWNT MO81.724, TH11.102, TH15.304, TU28.101
- SWRO MO57.002
- synchronous micro motors WE43.102
- synchrotron MO81.908
- synergy TU35.619
- synfuel WE81.402
- synthesis MO82.309, TH21.201, TU21.201
- Synthesis TU35.414
- synthesis WE21.301, WE80.404
- SYNTHESIZE TU35.512
- synthetic fibre WE51.206
- synthosomes MO81.218
- system integrated optimization for commercial HVAC WE82.206
- system integration MO37.402
- system modeling TH13.104
- systemic gene delivery TU45.107
- T-matrix TU35.802
- T-ray TU36.408
- tactile sensor WE48.102, WE48.103
- tangential flow filtration MO81.614
- targeted contrast agent TH15.204
- targeted delivery MO81.520, WE80.105
- targeted drug delivery MO31.204, WE28.405
- targeted gene delivery MO31.704
- targeted therapy WE55.205
- targeted WE80.107
- targeting TU35.107, TU35.120, TU35.307, TU35.308
- TAT peptide TU35.109
- TB calculations MO81.811
- TBC TH28.205
- TBL WE23.101
- TCAD TH23.105
- technical enzymes TH28.307
- technologies TU35.830
- technology commercialization TU50.136
- technology TU27.603
- Tekes FinNano technology programme TU50.181
- temperature sensors TH23.102
- temperature sensor MO81.807
- temperature MO81.813, TH25.304, WE23.103, WE57.401
- template assisted nanosphere lithography TH22.105
- templated self assembly TH22.102
- template MO31.103, WE80.519
- templating MO81.805
- temporomandibular joint MO81.518
- TEM TU25.102
- Tennessee research TU50.182
- termo responsive WE48.205
- terrace WE51.703
- terrorism TU35.918
- TERS MO81.915
- tertiary amine TU45.108
- testing MO81.910
- tetrapods TU35.826, WE21.302
- textile WE51.206
- TFET MO82.101
- TGDTA MO82.214
- The fundamental technology involves detection of microfractures as they occur WE28.307
- the pharmaceutical industry WE28.308
- the technology may be useful to the medical industry WE28.308
- therapeutics TH25.202
- therapeutic TU28.303
- thermal applications WE80.323
- thermal drop deflection TU41.601
- thermal evaporation WE80.407
- thermal fatigue TU47.602
- thermal hydrolysis WE81.812
- thermal infrared sensor TU36.113
- thermal manufacturing MO82.315
- thermal microjet deflection TU41.601
- thermal NIL TU35.919
- Thermal properties MO81.919
- thermal properties WE80.320
- thermal stability WE51.303
- thermal system management WE28.206
- thermal treatment TU35.516
- thermal TU35.404, TU36.214
- thermo-mechanical activation TU35.102
- thermoablation MO81.501
- thermocuring MO81.906
- thermodynamical properties WE52.204
- thermoelectrics WE41.302
- thermoplastic elastomers WE21.502
- thermoplastic nanocomposite WE80.319
- thermopneumatic WE41.601
- thermoresponsive hydrogels TU36.001
- thermosensitive liposomes WE80.117
- thermosensitive MO81.501
- thermosequencing MO81.603
- thin film battery TH28.104
- thin film deposition WE28.206
- thin films MO82.215, MO82.302, TU47.602
- thin film MO82.207, MO82.301, TH41.205, WE21.702, WE81.101
- thin magnetic layers TU21.303
- thiol-terminated WE42.104
- thiol TU35.902, TU41.505
- three dimensional patterning TU41.101
- three terminal TU30.404
- Ti-xNb alloys WE80.504
- Ti-Zr alloy WE80.503
- time resolved small angle scattering WE41.704
- time-resolved photoluminescence WE80.312
- tin oxide MO82.213
- TiO2 nanoparticle TU35.829
- TiO2-Ag porous nanocomposites WE80.306
- TiO2 TU35.908, WE41.202, WE41.404
- tip-growth TU35.408
- tissue engineering MO81.212, MO81.727, MO81.729, TU25.103, TU35.310
- tissue regeneration MO81.818
- tissue-engineered airway MO81.725
- titania nanotubes TU31.303
- titania TU36.004
- titanium carbide TU35.702
- titanium dioxide (titania) TU35.832
- titanium dioxide TU28.106, TU47.601, WE22.101
- titanium nitride MO81.918
- titanium oxide MO81.716, TU35.516, WE80.504
- titanium TH45.102, TU25.104, WE23.201
- title 22 WE81.908
- TLRs MO81.508
- TM mode MO82.110
- tomography MO21.703
- tomogrpahy MO21.701
- tools MO81.910
- toothpaste TH28.302
- top-down MO81.903, TH42.104, TU50.163
- torsional actuator WE23.204
- Torsional harmonic cantilever MO25.103
- toughness TU35.817
- toxic industrial chemicals MO81.301
- toxicity studies MO81.904
- toxicity MO81.526, MO81.527, MO81.720, MO82.205, TU35.828
- toxicological implications MO81.722
- toxicology MO81.505
- Toyota TU50.188
- TPD TH11.102
- tracking WE81.105
- transcriptional regulation WE81.602
- transfection MO81.504
- transferrin TU45.105
- transfer WE80.415
- transient enhanced diffusion MO82.108
- transient stability MO37.402
- transistors TH28.204
- transistor TH28.102, WE81.510
- transmission electron microscopy TU35.514
- transmittance TU35.814
- transonic TU28.207
- transport colloïdal particles WE51.204
- transportation fuelds TU48.101
- transportation industry WE81.616
- transportation MO37.203, TU28.208, TU31.301, WE81.205
- transport MO81.604, MO81.713, TU35.616, WE51.601
- trap TH23.103
- trasnfection TH21.301
- traveling wave dielectrophoresis TU36.210
- treatment MO81.722, WE81.903
- tree-like nanostructure MO81.810
- trench gate TU36.311
- trends TU30.502
- tri-imaging MO35.101
- tribal village WE81.617
- triblock copolymer TU35.502
- tribology WE51.705, WE80.505
- triggered release TU35.834
- tube control agent MO81.814
- tubular pinch effect WE28.105
- tugsten wire WE51.703
- tumor imaging MO81.310, WE80.106
- tumors WE80.104
- tumor MO81.501, WE28.301, WE80.110, WE80.122, WE80.124
- tungsten carbide TU35.702
- tunneling magnetoresistance TU35.617
- tunneling MO82.101, WE80.603
- turbulent boundary layer WE23.101
- two-dimensional simulation MO82.101
- type-II colloidal core-shell quantum dots WE80.312
- Uganda WE81.207
- Ukraine research TU50.178, TU50.202
- ULSI circuit simulation TU44.103
- ultra accelerated quantum chemical molecular dynamics TU35.612, WE81.501, WE81.502
- ultra thin films or polymers WE28.405
- ultra-fast laser TH15.203
- ultra-thin gold membrane WE43.104
- ultracapacitors TU28.203, WE57.105
- ultrafiltration MO81.706
- ultrapure water WE48.101
- ultrasharp tip WE51.703
- ultrasonic backscatter MO21.704
- ultrasound MO81.501, MO81.711, TH15.204, WE80.103
- ultraviolet WE81.910
- uncertainty MO81.724
- uncooled IR imaging TU36.205
- undoped TU30.404
- unified regional modeling TU30.402
- unified regional TU30.403, TU44.102
- unipolar FET theory WE24.102
- United States solar TU31.202
- university MO82.407, TU27.603
- unspecific TU35.309
- upconversion MO81.208, MO81.521, WE80.123
- upstream E&P WE81.508
- uptake TU35.309
- utility MO37.403
- UV absorption WE21.302
- UV coatings TU31.501
- UV curable paints and coatings TU50.103
- UV detector TU35.911
- UV imprint WE22.104
- UV irradiation TU35.407
- UV nanoimprint TU36.406
- UV photosensor TH12.204
- UV-block TU35.829
- UV-curable TU27.302
- UV-depth lithography WE43.102
- UV-VIS spectroscopy method TU36.101
- UV-Visible MO21.705, TU35.501
- vaccine delivery system MO81.730
- vaccine delivery WE48.205
- vaccine TU35.204
- vacuum surfaces TU35.517
- valveless WE51.605
- vancomycin TH15.205
- vapor liquid solid mechanism TH42.106
- vapor WE81.905
- Variation TU24.104
- VC investment TU27.602
- vectors WE55.204
- VEGF TH28.303
- vehicles TU47.403
- vehicle WE81.717, WE81.721
- velocity TU36.210
- ventilation TU50.129
- venture capital TU27.603, WE82.210
- verilog-a WE14.103
- versatility WE28.201
- vertical comb-drives TU36.401
- vertical kinetic TU50.190
- vertical velocity WE23.103
- vertical-field WE54.103
- vertically aligned carbon-nanotubes TU50.115
- VHDL TU36.412
- viability MO81.711, MO81.721
- vibrating TU28.206, WE28.403
- vibration measurement WE23.104
- vibration TU36.214
- vickers hardness WE51.301
- virus TU21.501, WE80.519
- viscocity MO81.906
- viscometer WE43.103
- viscosity WE80.218
- viscous oil TU28.204
- visible light TU28.106
- vitrobot MO21.703
- VLS WE80.414
- void TU36.303
- voltage doping transformation TU24.102
- voltage stability MO37.402
- voltage WE57.107
- voltaic WE81.505
- volume-channel WE24.102
- volumetric WE41.606
- voluntary partnership MO27.402
- vortex flow WE28.105
- VS WE80.414
- wafer level packaging TU23.101
- wall system MO27.302
- warning WE80.608
- waste heat recovery MO57.302
- waste plastics WE82.116
- waste reduction MO27.401, TU47.303
- waste to energy WE81.613
- waste to product TU47.303
- waste valorization TU47.304
- waste water MO81.709
- wastewater reuse WE81.904
- wastewater treatment WE81.705, WE81.908, WE81.912
- wastewater MO81.722, TU27.304, WE81.906
- waste MO27.203, WE28.104, WE81.608, WE81.622
- water desalination TU50.198
- water environment WE82.202
- water filtering WE28.405
- water filtration MO57.004
- water management WE28.205, WE81.901
- water meniscus TU35.605
- water processsing MO81.125, WE81.914
- water purification TU50.198, WE81.909
- water reclamation TU50.135
- water recovery TH11.303
- water remediation WE28.203
- water repellent WE41.405
- water reuse WE81.908
- water technologies WE28.106
- water treatment TU28.106, WE28.105
- water-dispersible TU35.821
- water-soluble polymers TU35.105
- water-soluble MO82.216
- waterproofing MO37.301
- water MO37.102, MO81.215, TU35.612, WE81.502, WE81.719, WE81.905, WE81.906, WE81.910, WE81.913, WE82.109
- wave energy converter TU50.175
- waveguide WE23.201, WE28.304
- wavelength TH28.103
- weak localization WE51.801
- wear resistance TU35.809
- wearable WE48.104
- web-based TU31.201
- WEEE WE82.117
- well-to-wheels TU47.402
- wet grind TU50.163
- wet milling MO31.205, MO82.210
- wetland system WE81.705
- wgs reaction WE81.804
- whey protein TU35.806
- whispering gallery mode TH15.102
- white biotechnology TH28.307, WE48.208
- white blood cells TH25.103
- white light WE28.102
- whole cell catalyst TH28.307
- Wi-Fi WE48.107
- Wi-Max WE48.107
- wind power MO57.403
- wind turbine variable speed hydraulic WE81.203
- wind vertical axis WE81.202
- wind-powered electrical generation TU50.148
- wind-turbine blades MO57.405
- window chamber MO81.519
- windows MO37.303
- wind TU27.506, TU31.301
- wireless applications TU36.211
- wireless sensor WE57.104
- wireless TU23.105
- Wireless WE48.107
- wirelss TU36.405
- wires WE80.401
- wire WE41.304
- wool fibre WE51.206
- worker safety MO81.735
- WPI film TU35.829
- X-ray absorption near-edge structure MO82.301
- X-ray diffraction MO82.303
- X-ray microscopy MO21.701
- X-ray scattering TU25.102
- Xerox Corporation TU50.165
- XPS TU35.814, WE80.511, WE81.710
- XRD MO81.917, MO82.201, MO82.214, TU35.501
- Y2O3 nano-powders MO81.919
- yeast WE80.208
- yield strength WE51.301
- Young module TU36.404
- Yttria stabilized zirconia MO57.202
- yttrium TH15.304
- zebrafish MO81.720
- zeolites TU35.834, WE81.915
- zeolite MO82.202, TH42.103
- zeolitic films WE80.304
- zero emission TU27.504
- zeta potential TU35.822, TU41.702, TU41.703
- ZFC-FC TU35.507
- zinc finger TU35.311
- zinc oxide MO81.716, MO81.720, TU35.832, WE80.402
- zinc oxie TU35.806
- zinc porphyrin TU35.313
- zinc selenide TH21.204
- zirconia aerogel WE81.808
- Zn vacancy MO82.113
- ZnCdSe MO82.204
- ZnMgO WE80.404
- ZnO nanoraod WE81.103
- ZnO nanorods MO82.112, MO82.303, TH12.101, TU35.510, TU35.511
- ZnO nanorod TH12.204
- ZnO TU35.911, WE21.302, WE80.403, WE80.411
- ZnSe MO82.309, WE80.412
- ZnS WE80.412
- ZrO2 TU36.010
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