![]() | Nanotech 2012 Vol. 1
Nanotechnology 2012: Advanced Materials, CNTs, Particles, Films and Composites (Volume 1)
Chapter 4: Nanoparticle Synthesis & Applications |
| - | Nanotechnology systems for drug delivery, multi-modal targeting and imaging of tumors |
| M. Singh, A.R. Patel, E. Lim, N. Zhang, K. Francis, S. Safe | |
| Florida A & M Univeristy, US | |
| - | Stability of Functionalized Magnetic Particles in a Physiologic Fluid |
| K. Baca Ramos, C.A. Martínez Pérez, C.A. Rodríguez González, H. Camacho Montes, I. Olivas Armendáriz, A. Martel, P.E. García-Casillas | |
| Universidad Autonoma de Ciudad Juarez, MX | |
| - | Synthesis, Characterization and Toxic Metal-Binding Ability of Poly(γ-glutamic acid)-coated Superparamagnetic Nanoparticles |
| B.H. Chen, B.S. Inbaraj | |
| Fu Jen University, TW | |
| - | Pilot-scale Nanoparticle Manufacture |
| K. Wegner, A. Grohn, S. Multer | |
| ETH Zurich, CH | |
| - | Continuous synthesis of highly-specific silicon nanopowder on the pilot-plant scale |
| T. Hülser, S.M. Schnurre, C. Schulz, H. Wiggers | |
| Institute of Energy and Environmental Technology (IUTA), DE | |
| - | Flame Deposition of Superhydrophobic and Superhydrophilic Nanoparticle Coatings on Paperboard Materials |
| M. Aromaa, J. Haapanen, H. Teisala, M. Tuominen, M. Stepien, J.J. Saarinen, M. Toivakka, J. Kuusipalo, J.M. Mäkelä | |
| Tampere University of Technology, FI | |
| - | A Novel Pulsed High-density Plasma Process for Nanoparticle Synthesis |
| U. Helmersson, D. Söderström, I. Pilch, S. Pillay, N. Brenning | |
| Linköping University, SE | |
| - | Synthesis of Copper Nanoparticles by a High Power Pulse Hollow Cathode |
| I. Pilch, D. Söderström, N. Brenning, U. Helmersson | |
| Linköping University, SE | |
| - | Effect of particle presence on gas phase temperature in the flame spray pyrolysis |
| S.R. Engel, Yi Gao, A.F. Koegler, D. Kilian, T. Seeger, W. Peukert, A. Leipertz | |
| Department of Engineering Thermodynamics, DE | |
| - | Iron-oxide nanoparticle synthesis from liquid spray flames under variable pressure conditions |
| S. Hardt, H. Wiggers, I. Wlokas, A. Kempf, C. Schulz | |
| University of Duisburg-Essen, DE | |
| - | Simultaneous removal of nano-sized contaminant particles with multi-modal size distribution using hybrid particle beams |
| I. Kim, J.W. Lee | |
| POSTECH, KR | |
| - | MD Simulations on the Momentum Transfer to Nano Contaminant Particle on Wafer Surface in Collisions with Cleaning Bullets |
| M.S Choi, J.W Lee | |
| POSTECH, KR | |
| - | Carbon coated FeRu and CoRu nanomagnets and their potential for medical application |
| A.A. El-Gendy, S. Hampel, A. Leonhardt, V.O. Khavrus, B. Büchner, R. Klingeler | |
| National Institute for standards, EG | |
| - | Structural refinement and photoluminescence properties of cube-like (Ca1-xCux)TiO3 crystals synthesized by the microwave-hydrothermal method |
| L.H. Oliveira, A.P. de Moura, L.S. Cavalcante, S.A. Gutierrez, E. Longo, J.A. Varela | |
| Universidade Federal de São Carlos, BR | |
| - | Composition and magnetic properties of zinc ferrite nanoparticles prepared by co-precipitation method at different temperatures |
| R. Reisi Shahraki, S.A. Seyyed Ebrahimi, M. Ebrahimi | |
| University of Tehran, IR | |
| - | Influence of an alternating current on silver nanoparticles’ formation processes in a polymeric matrix |
| Sh.K. Amerkhanova, D.S. Belgibaeva, R.M. Shlyapov, M.S. Tatibaeva, Sh.A. Erzhanova | |
| Karaganda State University, KZ | |
| - | Microwave-assisted hydrothermal synthesis of ZnO powders with different reagents |
| C.S. Xavier, A.P. de Moura, M.S. Li, E. Longo, J.A. Varela, S. Cava | |
| Universidade Federal de Pelotas, BR | |
| - | Photocatalytic activity of mesoporous titanium dioxide nanoparticles under visible light irradiation |
| Y. Ikuma, S. Kida, R. Kuramoto, K. Niwa, S. Anandan | |
| Kanagawa Inst. of Tech., JP | |
| - | Water-soluble nanoparticles as an universal imaging tool |
| J. Niehaus, S. Becker, C. Schmidtke, D. Ness, K. Werner, H. Weller | |
| Center for Applied Nanotechnology, DE | |
| - | Nanomaterials and nanotechnologies for the conservation of the materials of cultural heritage |
| J. Rathousky, V. Kalousek, R. Zouzelka | |
| J. Heyrovsky Institute of Physical Chemistry, Academy of Sciences of the Czech Republic, CZ | |
| - | A novel method for bacteria inactivation using Engineered Water Nanostructures. |
| G. Pyrgiotakis, J. McDevitt, T. Yamauchi, P. Demokritou | |
| Harvard School of Public Health, US | |
| - | Rapid Combustion Synthesis of Zinc Oxide Nanostructures |
| W. Merchan-Merchan, M. Farmahini Farahani | |
| University of Oklahoma, US | |
| - | CdMoO4 synthesized by a microwave-assisted hydrothermal method and their photoluminescence and photocatality properties |
| A.P. de Moura, L.H. Oliveira, C.S. Xavier, I.L.V. Rosa, M.S. Li, E. Longo, J.A. Varela | |
| Universidade Estadual Paulista, BR | |
| - | Radon Mitigation Efficiency using Nano-size Carbon Colloid |
| S.H. Kim, K.H. Lee, D.H. Kim, M.J. Kim, K.S. Jung, S.Y. Cho | |
| Yonsei University, KR | |
| - | Fabrication and characterization of Eco-Friendly Heat Insulating Materials using inorganic Nanofillers such as Titanate Nanotubes and Layered Double Hydroxides |
| S.H. Hwang | |
| Daegu Gyeonbuk Institure of Science and Technology, KR | |
| - | Highly Luminescent Quantum Dots: New Tools for Biological Applications |
| F. Mirnajafizadeh, F. Wang, P. Reece, J.A. Stride | |
| University of New South wales, AU | |
| - | A toolbox-set of Nanoparticles |
| V. Jamier, E. Casal, V. Puntes | |
| Catalan Institute of Nanotechnology, ES | |
| - | Synthesis and Characterization of Nickel Ferrite (NiFe2O4) nanoparticles with Silver Addition for H2S gas detectors |
| C.A. Rodríguez-González, N. Domínguez-Ruiz, P.E. García-Casilla, J.F. Hernández-Paz, M. Ramos-Murillo, H. Camacho-Montes, R.C. Ambrosio-Lazaro | |
| Universidad Autonoma de Ciudad Juarez, MX | |
| - | A simple approach for the synthesis of anisometric particles by electrospinning |
| K. Friedemann | |
| Max-Planck-Institut for Polymer Research Mainz, DE | |
| - | Synthesis of Non-Spherical CdSe Quantum Dots |
| O.S. Ivanova, K.A. Zimmermann, T.A. Campbell | |
| Virginia Tech, US | |
| - | Pulsed laser generation of clean colloidal metal nanoparticles |
| N. Bärsch, D. Bartke, S. Barcikowski | |
| Particular GmbH, DE | |
| - | Nanogel Star Polymer Nanostructures of Controlled Size, Molecular Architecture and Functionality: No Assembly Required |
| R.D. Miller, J. Sly, V.Y. Lee, E. Appel, T. Nguyen, H. Nunes, M. Tjio, L. Gomez, M. McNeil, J. Munninghoff, A.E. Rowan | |
| IBM Almaden Research Center, US | |
| - | Facile doping of silica nanoparticles with far-red cyanine dyes using the microemulsion method. |
| R. Nooney, C. McDonagh | |
| Biomedical Diagnostics Institute, IE | |
| - | CdSe Nanoparticles in Silica Matrix by Sol Gel method |
| N. Hullavarad, S. Hullavarad | |
| University of Alaska Fairbanks, US | |
| - | One-pot synthesis of monodisperse PbSe quantum dots and graphene oxide nanocomposites |
| Yi Pan, J.R. Lombardi | |
| City College of New York, US | |
| - | Synthesis and characterization of copper oxide decorated zinc oxide nanorods |
| S.K. Lim, S.H. Hong, S.H. Hwang, S. Kim, D.J. Lee, H.S. Kim | |
| DGIST(Daegu Gyeongbuk Institute of Science & Technology), KR | |
| - | A Novel High Yield Process for Gold Sulfide Nanoparticle Synthesis via Shifting Equilibrium of Self-Assembly Reaction |
| D. Patel, K. James, G. Zhang, A.M. Gobin | |
| University of Louisville, US | |
| - | Synthesis of non-oxide ceramic powders by carbothermal reduction of a combustion synthesis precursor |
| M. Qin | |
| University of Science and Technology Beijing, CN | |
| - | Luminescent Terbium/Europium chelates-based Silica Nanoparticles : Stability and Incorporation Efficiency measured by Radioactive Probe |
| N. Wartenberg, O. Raccurt, M. Mazzanti, D. Imbert, E. Bourgeat-Lami | |
| Commissariat à l’Energie Atomique, FR | |
| ISBN: | 978-1-4665-6274-5 |
| Pages: | 804 |
| Hardcopy: | $209.95 |
| Order: | Mail/Fax Form |
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