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Chemical Vapor Synthesis of Inorganic Nanopowders
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Authors: H. Y. Sohn (University of Utah Salt Lake City, Utah, USA) 
Book Description:
Materials in the form of ultrafine or nanosized powders display many useful physical, mechanical and chemical properties. The properties of nano-scaled materials are significantly different from atoms and bulks materials arise mainly from large fraction of surface atoms, high surface energy and reduced imperfections. The effects of grain size on mechanical properties have been recognized and generated much interest. It would therefore be advantageous if compounds can be produced in fine powder form from inexpensive raw materials using less energy. Their small sizes also improve hardness, fracture toughness and low-temperature ductility as well as catalytic and interfacial processes. Nanomaterials also enable lower processing temperatures compared with bulk materials and faster reaction time due to their higher surface reactivity. Thus, the production of nanosized powder is an important industrial process and is explored in this technical and informative book. (Imprint: Nova)

Table of Contents:
Acknowledgments

1. Introduction pp. 1-4

2. Principles of Chemical Vapor Synthesis pp. 5-14

3. Metallic Nanopowders pp. 15-42

4. Intermetallic and Alloy Powders pp. 43-74

5. Tungsten Carbide Nanopowder pp. 75-98

6. Tungsten Carbide-Cobalt Composite Nanopowder pp. 99-118

7. Flame Chemical Vapor Synthesis of Silica Nanopowder pp. 119-134

8. Plasma-Assisted Chemical Vapor Synthesis of Zirconia Nanopowder pp. 135-144

9. Computational Fluid Dynamic Modeling of the Chemical Vapor Synthesis Processes pp. 145-186

References pp. 189-211

Index

   Series:
      Chemistry Research and Applications
      Nanotechnology Science and Technology
   Binding: Hardcover
   Pub. Date: 2013- January
   Pages: 211, 7x10
   ISBN: 978-1-62100-002-0
   Status: AV
  
Status Code Description
AN Announcing
FM Formatting
PP Page Proofs
FP Final Production
EP Editorial Production
PR At Prepress
AP At Press
AV Available
  
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Chemical Vapor Synthesis of Inorganic Nanopowders