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The role of phosphorus in the growth of vapour-grown carbon fibres obtained by catalytic decomposition of hydrocarbons

机译:磷在碳氢化合物催化分解得到的气相碳纤维的生长中的作用

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摘要

Production of VGCF fibres from the decomposition of a methane-hydrogen mixture over metal particles is influenced by the support on which the particles have been laid. It was found that different as-received commercial graphite supports, according to their impurity content, could promote or inhibit the VGCF growth. Good yields of vapour-grown carbon fibres with a length up to 6 cm have been fabricated by catalytic decomposition of methane over particles obtained from Fe_3(CO)_(12). Addition to the substrate of small amounts of phosphorus from a solution of H_3PO_4 in ethanol, followed by impregnation with Fe_3(CO)_(12), was found to be effective in promoting the growth of VGCFs and increasing the yield. But increasing the amount of phosphorus over P/Fe ~0.25 had an inhibiting effect on the growth of VGCFs. So the yield of VGCFs was optimized for a given phosphorus concentration. These phenomena are interpreted by the formation of Fe-P compounds which, depending on their formulae, lower or increase the melting point of the catalyst particles. According to the VLS theory, catalytic growth up to a macroscopic scale results from the liquid state of the catalyst.
机译:由甲烷-氢混合物在金属颗粒上分解产生的VGCF纤维受其上已放置颗粒的载体的影响。已经发现,根据杂质含量,不同的原样商业石墨载体可以促进或抑制VGCF的生长。通过将甲烷催化分解成Fe_3(CO)_(12)制成的颗粒,可以制备出长达6 cm的蒸气生长碳纤维,具有良好的产量。发现从H_3PO_4的乙醇溶液中向基质中添加少量磷,然后用Fe_3(CO)_(12)浸渍,可有效促进VGCF的生长并提高产量。但是增加磷含量超过P / Fe〜0.25对VGCFs的生长有抑制作用。因此,对于给定的磷浓度,VGCF的收率得到优化。这些现象通过Fe-P化合物的形成来解释,该Fe-P化合物根据其式而降低或提高了催化剂颗粒的熔点。根据VLS理论,催化剂的增长到宏观尺度上是由催化剂的液态引起的。

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