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Coupled process of plastics pyrolysis and chemical vapor deposition for controllable synthesis of vertically aligned carbon nanotube arrays

机译:塑料热解和化学气相沉积的耦合过程,用于可控合成垂直排列的碳纳米管阵列

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Efficient conversion of waste plastics into advanced materials is of conspicuous environmental, social and economic benefits. A coupled process of plastic pyrolysis and chemical vapor deposition for vertically aligned carbon nanotube (CNT) array growth was proposed. Various kinds of plastics, such as polypropylene, polyethylene, and polyvinyl chloride, were used as carbon sources for the controllable growth of CNT arrays. The relationship between the length of CNT arrays and the growth time was investigated. It was found that the length of aligned CNTs increased with prolonged growth time. CNT arrays with a length of 500 μm were obtained for a 40-min growth and the average growth rate was estimated to be 12 μm/min. The diameter of CNTs in the arrays can be modulated by controlling the growth temperature and the feeding rate of ferrocene. In addition, substrates with larger specific surface area such as ceramic spheres, quartz fibers, and quartz particles, were adopted to support the growth of CNT arrays. Those results provide strong evidence for the feasibility of conversion from waste plastics into CNT arrays via this reported sustainable materials processing.
机译:将废塑料有效地转化为先进材料具有明显的环境,社会和经济效益。提出了一种塑料热解和化学气相沉积的方法,用于垂直排列的碳纳米管(CNT)阵列的生长。各种塑料(例如聚丙烯,聚乙烯和聚氯乙烯)被用作碳源,以控制CNT阵列的生长。研究了碳纳米管阵列长度与生长时间之间的关系。发现排列的CNT的长度随着延长的生长时间而增加。获得40分钟生长的长度为500μm的CNT阵列,平均生长速率估计为12μm/ min。可以通过控制二茂铁的生长温度和进料速率来调节阵列中CNT的直径。另外,采用具有较大比表面积的基底,例如陶瓷球,石英纤维和石英颗粒,来支持CNT阵列的生长。这些结果提供了强有力的证据,证明了通过这种报道的可持续材料加工技术,可以将废塑料转化为碳纳米管阵列的可行性。

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