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Ultrananocrystalline Diamond / Amorphous Carbon Composite Films-Deposition, Characterization and Applications

机译:超纳米晶金刚石/非晶碳复合膜的沉积,表征及应用

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UNCD/a-C composite films have been deposited by microwave plasma chemical vapour deposition from methaneitrogen mixtures with 17% CH4 in the temperature range 500-770℃ on various substrates such as monocrystalline silicon wafers, polycrystalline diamond, c-BN, TiN, GaAs, and other materials of technological interest. The resulting films have been thoroughly characterized with respect to their morphology, crystallinity, composition, and bonding structure. It was found that they are composed of diamond nanocrystallites (3-5 nm in diameter) surrounded by 1-1.5 nm amorphous carbon grain boundary material; the ratio of the volume fractions of crystalline and amorphous phase is close to unity. The investigations of the application-relevant properties of the UNCD/a-C films revealed that they are attractive for a number of mechanical, tribological, structural, and biomedical applications.
机译:UNCD / aC复合膜已通过微波等离子化学气相沉积法,在500-770℃的温度范围内,从具有17%CH4的甲烷/氮气混合物中沉积在各种衬底上,例如单晶硅片,多晶金刚石,c-BN,TiN,GaAs以及其他具有技术意义的材料。所得膜的形态,结晶度,组成和键合结构已得到充分表征。发现它们由被1-1.5 nm非晶碳晶粒边界材料包围的金刚石纳米微晶(直径3-5 nm)组成。结晶相和非晶相的体积分数之比接近于1。对UNCD / a-C薄膜与应用有关的性能的调查表明,它们对许多机械,摩擦,结构和生物医学应用具有吸引力。

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