Synthesis and Characterization of Advanced Materials: 681 - Rilegato

 
9780841235403: Synthesis and Characterization of Advanced Materials: 681

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Sinossi

These papers by leading experts look at current methods for synthesizing new materials. The methods presented include chemical vapor deposition synthesis, solution synthesis, pyrolysis and combustion synthesis, and polymer synthesis. Featuring in-depth coverage of ceramic materials, the volume also discusses group III nitrides, fullerenes, and ferroelectrics.

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Contenuti

  • OVERVIEW
  • 1: Dieter M. Gruen: Chemistry of Advanced Materials
  • 2: Harold W. Kroto: New Horizons in the Structure and Properties of Layered Materials
  • CHEMICAL VAPOR DEPOSITION SYNTHESIS AND SURFACE CHARACTERIZATION
  • 3: Robert F. Davis, Michael D. Bremser, Ok-Hyun Nam, William G. Perry, Tsvetanka Zheleva, and K. Shawn Ailey: Chemical Considerations Regarding the Vapor-Phase Epitaxy of Binary and Ternary III-Nitride Thin Films
  • 4: M. M. Sung, J. Ahn, V. Bykov, D. D. Koleske, A. E. Wickenden, and J. W. Rabalais: Autocompensated Surface Structure of GaN Film on Sapphire
  • 5: John W. Hastie, Albert J. Paul, David W. Bonnell, and Peter K. Schenck: In Situ Monitoring by Mass Spectrometry of Laser Ablation Plumes Used in Thin Film Deposition
  • 6: Steve Kleckley, Hao Wang, Isaiah Oladeji, Lee Chow, Terry K. Daly, Peter R. Buseck, Touradj Solouki, and Alan Marshall: Fullerenes and Polymers Produced by the Chemical Vapor Deposition Method
  • 7: Yuji Kawabuchi, Chiaki Sotowa, Keiichi Kuroda, Shizuo Kawano, D. Duayne Whitehurst, and Isao Mochida: Chemical Vapor Deposition of Organic Compounds over Active Carbon Fiber To Control Its Porosity and Surface Function
  • 8: Young C. Kim, Sung-Chul Yi, and Sei-Ki Moon: Recombination of Oxygen and Nitrogen Atoms on Silica and High-Temperature Coating Materials
  • SOLUTION SYNTHESIS AND CHARACTERIZATION
  • 9: James H. Adair, Jeffrey A. Kerchner, Nelson S. Bell, and Melanie L. Carasso: Application of Chemical Principles in the Solution Synthesis and Processing of Ceramic and Metal Particles
  • 10: Allen W. Apblett, Galina D. Georgieva, Larry E. Reinhardt, and Edwin H. Walker: Precursors for Aqueous and Liquid-Based Processing of Ferroelectric Thin Films
  • 11: Jeffrey A. Kerchner, J. Moon, R. E. Chodelka, A. A. Morrone, and James H. Adair: Nucleation and Formation Mechanisms of Hydrothermally Derived Barium Titanate
  • 12: Nelson S. Bell, Seung-Beom Cho, and James H. Adair: Glycothermal Synthesis of Alpha Aluminum Oxide
  • 13: Ramasubramanian Narayanan and Richard M. Laine: Synthesis and Characterization of a Trimetallic Double-Alkoxide Precursor to Potassium Aluminosilicate
  • 14: David R. Treadwell, Anthony C. Sutorik, Siew Siang Neo, Richard M. Laine, and Robert C. Svedberg: Synthesis of *b''-Alumina Polymer Precursor and Ultrafine *b''-Alumina Composition Powders
  • PYROLYSIS AND COMBUSTION SYNTHESIS AND CHARACTERIZATION
  • 15: Y.-J. Chen, N. G. Glumac, G. Skandan, and B. H. Kear: High-Rate Production of High-Purity, Non-Agglomerated Oxide Nanopowders in Flames
  • 16: S. Farquharson, S. Charpenay , M. B. DiTaranto, P. A. Rosenthal, W. Zhu, and S. E. Pratsinis: In-Situ Particle Size and Shape Analysis During Flame Synthesis of Nanosize Powders
  • 17: O. E. Kashireninov: Reactants Transport in Combustion Synthesis of Ceramics
  • 18: R. Kapoor and S. T. Oyama: A Comparison of the Syntheses of V, Nb, Mo Carbides and Nitrides by Temperature Programmed Reaction
  • POLYMERIZATION SYNTHESIS AND CHARACTERIZATION
  • 19: John A. Pojman, Dionne Fortenberry, Akhtar Khan, and Victor Ilyashenko: Frontal Polymerization: Self-Propagating High-Temperature Synthesis of Polymeric Materials
  • 20: Eric J. Houser and Teddy M. Keller: Synthesis and Characterization of Linear Tetraphenyl Tetramethyldisiloxane Diacetylene Copolymers
  • 21: Teddy M. Keller and David Y. Son: Blending Studies of Poly(siloxane acetylene) and Poly(carborane siloxane acetylene)

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