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Organized carbon-nanotubes grown by chemical vapor deposition with a gas-phase catalyst of iron pentacarbonyl

机译:用五羰基铁的气相催化剂通过化学气相沉积法生长的有序碳纳米管

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Organized carbon nanotubes (CNTs) have been synthesized by a gas-phase catalytic chemical-vapor-deposition technique with the iron pentacarbonyl-acetylene system at 750° C. The effects of the C2H2 flow rate, the supplying of Fe(CO)5, the H2 flow rate, and the N2 atmosphere, on the CNT growth are investigated in this work. Acetylene as a carbon source can accelerate the CNT growth at a higher input under the co-existence of a high Fe(CO)5 input. Hydrogen can de-activate the poised catalyst for growing long and organized CNTs. Nitrogen, on the other hand, is disadvantageous for the CNT growth.
机译:通过气相催化化学气相沉积技术,以五羰基乙炔铁在750°C的温度下合成了有序的碳纳米管。C 2 H 2 流速,Fe(CO) 5 的供给,H 2 流速和N 2 气氛,在这项工作中对碳纳米管的生长进行了研究。在高Fe(CO) 5 输入量的同时存在下,乙炔作为碳源可以在较高输入量下促进CNT的生长。氢气可以使准备好的催化剂失活,从而使碳纳米管长而有序。另一方面,氮对CNT的生长不利。

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