Parametric study of waste chicken fat catalytic chemical vapour deposition for controlled synthesis of vertically aligned carbon nanotubes

A. Suriani, A. Dalila, A. Mohamed, M. S. Rosmi, M. Mamat, M. F. Malek, M. Ahmad, N. Hashim, I. Isa, T. Soga, M. Tanemura
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引用次数: 4

Abstract

Abstract High-quality vertically aligned carbon nanotubes (VACNTs) were synthesised using ferrocene-chicken oil mixture utilising a thermal chemical vapour deposition (TCVD) method. Reaction parameters including vaporisation temperature, catalyst concentration and synthesis time were examined for the first time to investigate their influence on the growth of VACNTs. Analysis via field emission scanning electron microscopy and micro-Raman spectroscopy revealed that the growth rate, diameter and crystallinity of VACNTs depend on the varied synthesis parameters. Vaporisation temperature of 570°C, catalyst concentration of 5.33 wt% and synthesis time of 60 min were considered as optimum parameters for the production of VACNTs from waste chicken fat. These parameters are able to produce VACNTs with small diameters in the range of 15–30 nm and good quality (ID/IG ~ 0.39 and purity ~76%) which were comparable to those synthesised using conventional carbon precursor. The low turn on and threshold fields of VACNTs synthesised using optimum parameters indicated that the VACNTs synthesised using waste chicken fat are good candidate for field electron emitter. The result of this study therefore can be used to optimise the growth and production of VACNTs from waste chicken fat in a large scale for field emission application.
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鸡废脂肪催化化学气相沉积控制合成垂直排列碳纳米管的参数研究
摘要采用热化学气相沉积(TCVD)方法,以二茂铁-鸡油混合物为原料合成了高质量的垂直排列碳纳米管(VACNTs)。本文首次考察了气化温度、催化剂浓度和合成时间等反应参数对vacnt生长的影响。通过场发射扫描电镜和微拉曼光谱分析发现,VACNTs的生长速度、直径和结晶度与不同的合成参数有关。以鸡废脂肪为原料制备vacnt的最佳工艺参数为蒸发温度570℃,催化剂浓度5.33 wt%,合成时间60 min。这些参数能够生产出直径在15-30 nm范围内的小直径VACNTs,并且质量好(ID/IG ~ 0.39,纯度~76%),与使用传统碳前驱体合成的VACNTs相当。利用最佳参数合成的VACNTs的低开启场和阈值场表明,利用鸡废脂肪合成的VACNTs是场电子发射体的良好候选材料。因此,本研究的结果可用于优化从废鸡脂肪中大规模生产vacnt的生长和生产,以用于现场排放应用。
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Cogent Physics
Cogent Physics PHYSICS, MULTIDISCIPLINARY-
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