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Influence of hydrogen on chemical vapour synthesis of different carbon nanostructures using propane as precursor and nickel as catalyst

机译:氢对以丙烷为前驱体和镍为催化剂的不同碳纳米结构化学气相合成的影响

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摘要

The role of hydrogen in the catalytic chemical vapour deposition of carbon nanotubes using sputtered nickel thin film as a catalyst is explained in this work. The growth of different carbon nanostructures with the variation in the precursor gas content was studied by keeping all other process parameters constant and using sputtered Ni thin film as a catalyst. The catalyst granule size, its external morphology and the resulting products were analysed. Carbon nanotubes (CNTs), carbon nanofibres (CNFs) and carbon nanoribbons (CNRs) were observed under different growth conditions. The different conditions of growth leading to form tubes, fibres or ribbons were analysed by varying the flow ratio of propane and hydrogen gas during the high temperature growth. Scanning and transmission electron microscopies confirmed the above structures under different growth conditions. The role of hydrogen on the surface passivation behaviour of the Ni catalyst and its correlative effect on the growth of carbon nanostructures is analysed. This direct approach can, in principle, be used to synthesize different types of carbon nanostructures by tailoring the hydrogen concentration.
机译:在这项工作中解释了氢在使用溅射镍薄膜作为催化剂的碳纳米管催化化学气相沉积中的作用。通过保持所有其他工艺参数恒定并使用溅射的Ni薄膜作为催化剂,研究了随着前驱体气体含量的变化而产生的不同碳纳米结构的生长。分析了催化剂的粒度,其外部形态和所得产物。在不同的生长条件下观察到碳纳米管(CNTs),碳纳米纤维(CNFs)和碳纳米带(CNRs)。通过改变高温生长过程中丙烷和氢气的流量比,分析了导致形成管,纤维或带的不同生长条件。扫描和透射电子显微镜检查证实了在不同生长条件下的上述结构。分析了氢在镍催化剂表面钝化行为中的作用及其与碳纳米结构生长的相关作用。原则上,该直接方法可用于通过调整氢浓度来合成不同类型的碳纳米结构。

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