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The role of sulfur in promoted growth of carbon nanotubes in chemical vapor deposition proposed through the characterizations on catalytic nanoparticles

机译:通过催化纳米颗粒的表征,提出了硫在化学气相沉积中促进碳纳米管生长的作用

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We have investigated effects of sulfur addition as a promoter on the growth of carbon nanotube (CNT) and attempted to provide insights into the role of sulfur during CNT formation via catalyst characterization. CNTs were synthesized on a quartz substrate using sulfur in addition to conventional catalysts, cobalt-molybdenum co-catalyst, through chemical vapor deposition employing carbon monoxide as a carbon source. Sulfur powder was used as a sulfur source in this work. Some characterization approaches such as atomic force microscope, high-resolution transmission electron microscopy, time-of-flight secondary ion mass spectroscopy, X-ray photo- luminescence spectroscopy and chemical equilibrium calculation were performed in order to investigate the role of sulfur in CNT synthesis. It was suggested that sulfur and catalytic metal formed sulfides particularly in the vicinity of surface, resulting in the acceleration of CNT growth probably due to the enhancement of atomic carbon diffusion.
机译:我们已经研究了硫作为促进剂对碳纳米管(CNT)生长的影响,并试图通过催化剂表征提供有关碳在CNT形成过程中硫的作用的见解。通过使用一氧化碳作为碳源的化学气相沉积,除了传统的催化剂钴钼助催化剂以外,还使用硫在石英基板上合成CNT。硫粉在这项工作中用作硫源。为了研究硫在碳纳米管合成中的作用,进行了一些表征方法,例如原子力显微镜,高分辨率透射电子显微镜,飞行时间二次离子质谱,X射线光致发光光谱和化学平衡计算。 。建议硫和催化金属特别是在表面附近形成硫化物,这可能是由于原子碳扩散的增强而加速了CNT的生长。

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