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Synthesis Functionalization and Surface Treatment of NANOPARTICLES

By: Marie-Isabelle Baraton
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Material type: TextTextPublisher: USA American Scientific Publisher 2003Edition: 2003Description: 302 pages A-4ISBN: 1-58883-009-8Subject(s): Marie-Isabelle Baraton Synthesis Functionalization and surface Treatment of NANOPARTICLES American Scientific Publisher Marie-Isabelle Baraton Synthesis Functionalization and surface Treatment of NANOPARTICLESDDC classification: 540
Contents:
Nanoparticles from mechanical attrition Electrochemical synthesis of metallic nanopowders Sol-gel-derived oxide and sulfide nanoparticles Templating nanostructure through the self-assembly of surfactants Synthesis and assembly of functionalized sold nanoparticles organic functionalization of metal oxide nanoparticles Polymer metal nanocluster composites Functionalized tio nanoparticles for pigments, photoelectrochemistry, and solid state chemical sensors surface modification of tio, a route for efficient semiconductor assisted photocatalysis Silicon nanoparticles: next generation of ultrasensitive flourescent markers Surface- engineered nanoparticles as drug carriers Characterization of surface structure and interaction between particles Dielectric properties of nanoparticles
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540B-24 (Browse shelf) Available 0103000097

This book present novel and improved synthesis methods of nanoparticles and nanocomposites.

Nanoparticles from mechanical attrition Electrochemical synthesis of metallic nanopowders Sol-gel-derived oxide and sulfide nanoparticles Templating nanostructure through the self-assembly of surfactants Synthesis and assembly of functionalized sold nanoparticles organic functionalization of metal oxide nanoparticles Polymer metal nanocluster composites Functionalized tio nanoparticles for pigments, photoelectrochemistry, and solid state chemical sensors surface modification of tio, a route for efficient semiconductor assisted photocatalysis Silicon nanoparticles: next generation of ultrasensitive flourescent markers Surface- engineered nanoparticles as drug carriers Characterization of surface structure and interaction between particles Dielectric properties of nanoparticles

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