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Diamond/β‐SiC Composite Films
Diamond/β‐silicon carbide (SiC) composite films have been successfully synthesized through microwave plasma chemical vapor deposition (MWCVD) and hot filament chemical vapor deposition (HFCVD) processes. This chapter starts from a basic introduction of the deposition instruments, condition and control of the film properties, and characterization. It discusses the growth mechanisms of the diamond/β‐SiC composite films. The chapter presents the example applications for protein absorption and diamond networks. The random reaction of Si‐ or C‐containing species with diamond or β‐SiC surfaces interrupts the growth of both phases, and results in only nanocrystalline composite films. The achievement in the controlled synthesis of composite films offers us the possibility of designing the growth of composite films with complex 3D structures to improve the toughness and wear resistance of diamond films on various substrates.
Diamond/β‐SiC Composite Films
Diamond/β‐silicon carbide (SiC) composite films have been successfully synthesized through microwave plasma chemical vapor deposition (MWCVD) and hot filament chemical vapor deposition (HFCVD) processes. This chapter starts from a basic introduction of the deposition instruments, condition and control of the film properties, and characterization. It discusses the growth mechanisms of the diamond/β‐SiC composite films. The chapter presents the example applications for protein absorption and diamond networks. The random reaction of Si‐ or C‐containing species with diamond or β‐SiC surfaces interrupts the growth of both phases, and results in only nanocrystalline composite films. The achievement in the controlled synthesis of composite films offers us the possibility of designing the growth of composite films with complex 3D structures to improve the toughness and wear resistance of diamond films on various substrates.
Diamond/β‐SiC Composite Films
Jiang, Xin (Autor:in) / Kang, Zhenhui (Autor:in) / Guo, Xiaoning (Autor:in) / Zhuang, Hao (Autor:in) / Fu, Haiyuan (Autor:in)
Novel Carbon Materials and Composites ; 169-203
06.05.2019
35 pages
Aufsatz/Kapitel (Buch)
Elektronische Ressource
Englisch
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