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Influence of the environment on the surface conductivity of chemical vapor deposition diamond

机译:环境对化学气相沉积金刚石表面电导率的影响

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The influence of differing chemical environments on the surface conductive properties of chemical vapor deposition (CVD) diamond films has been explored. Only small changes in the insulating character of the diamond surface is observed when surfaces freshly hydrogenated in a microwave plasma are exposed in-situ to water vapour or a range of common gases in separate experiment. However, a large increase in surface conductivity is seen if the surface is first exposed to water vapour and then other gasses including oxygen, carbon dioxide and formic acid. Conductivity changes are also observed in solution of differing pH, although irretrievable loss of the conductive phase is observed if the diamond is heated in alkaline solution. the applicability of recent models in explaining the observations is considered.
机译:已经探索了不同化学环境对化学气相沉积(CVD)金刚石膜的表面导电性能的影响。当在单独的实验中将在微波等离子体中新鲜氢化的表面原位暴露于水蒸气或多种常见气体时,仅观察到金刚石表面绝缘特性的微小变化。但是,如果先将表面暴露于水蒸气中,然后再暴露于其他气体(包括氧气,二氧化碳和甲酸)中,则表面电导率会大大提高。在不同pH值的溶液中也观察到电导率变化,尽管如果在碱性溶液中加热金刚石,则会观察到不可逆的导电相损失。考虑了最近模型在解释观测结果中的适用性。

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