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Flame nanotube synthesis In moderate electric fields: From alignment and growth rate effects to structural variations and branching phenomena

机译:火焰纳米管合成 在中等电场中:从取向和生长速率效应到结构变化和分支现象

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摘要

The flame synthesis of carbon nanotubes (CNTs) coupled with application of moderate electric fields is studied experimentally as a means to control CNTs growth rates and morphology. The nanotubes are grown on a conductive metal-based catalytic probe positioned at the fuel side of the opposed flow oxy-flame. The probe was connected to an external voltage source to generate radial electric fields on its surface. At low applied voltages (from 0.3 to 2 V), the effect of the electric field on alignment and growth rate enhancement revealed the generation of vertically aligned carbon nanotube (VACNT) arrays with uniform distribution of CNT diameters. Further increases of the applied voltage resulted in structural modifications of the generated nanotubes. In particular, helically coiled CNTs were observed at applied voltages of ~3 V. At higher voltages the arrays contained multi-walled CNTs with fascinating modified morphologies such as Y, T, and multi-junction patterns. Analysis of the samples generated at applied voltage of 5 V showed the presence of particle sprouting and early CNT junctions in the form of small bumps extruding from the outer surface of the CNTs. Analysis of material samples synthesized at 12 and 25 V showed the presence of fully branched CNT structures.
机译:通过实验研究了碳纳米管(CNTs)的火焰合成与中等电场的应用,以此作为控制碳纳米管生长速率和形貌的手段。纳米管生长在导电金属基催化探针上,该探针位于逆流氧火焰的燃料侧。探头连接到外部电压源,在其表面产生径向电场。在低外加电压(0.3至2 V)下,电场对取向和生长速率增强的影响揭示了碳纳米管直径均匀分布的垂直取向碳纳米管(VACNT)阵列的产生。施加电压的进一步增加导致生成的纳米管的结构改变。特别是,在~3 V的外加电压下观察到螺旋盘绕的CNT。在较高的电压下,阵列包含多壁碳纳米管,具有迷人的修饰形态,如Y、T和多结模式。对在5 V施加电压下产生的样品的分析表明,存在颗粒萌芽和早期的CNT结,其形式是从CNT的外表面挤出的小凸起。 对在12和25 V下合成的材料样品的分析显示,存在完全支化的CNT结构。

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