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Gas analysis of the CVD process for high yield growth of carbon nanotubes over metal-supported catalysts

机译:CVD工艺的气体分析,用于金属负载催化剂上碳纳米管的高产率生长

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Changes in the gas composition during the methane chemical vapor deposition growth of single- and double-walled carbon nanotubes over metal-supported MgO catalysts were investigated in an attempt to increase the nanotube yield. Monitoring the gas composition by gas chromatography as a function of the reaction time provides information on the activity and lifetime of the catalyst. The degree of methane decomposition, i.e., the C-H bond dissociation, was closely related to the nanotube yield, and the Fe-Mo binary catalyst exhibited a high activity. The effects of water vapor on the catalytic nanotube growth were also studied by introducing water vapor in the inlet gas. An appropriate amount of water prolonged the lifetime of the catalyst and increased the nanotube yield by 35 percent.
机译:研究了单壁和双壁碳纳米管在金属负载MgO催化剂上甲烷化学气相沉积生长过程中气体成分的变化,以提高纳米管的收率。通过气相色谱法监测气体成分与反应时间的关系,可提供有关催化剂活性和寿命的信息。甲烷分解程度(即C-H键解离)与纳米管收率密切相关,Fe-Mo二元催化剂表现出较高的活性。通过在入口气体中引入水蒸气,研究了水蒸气对催化纳米管生长的影响。适量的水延长了催化剂的使用寿命,并将纳米管产率提高了35%。

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