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Experimental studies of the formation process and morphologies of carbon nanotubes with bamboo mode structures

机译:竹模结构碳纳米管的形成过程和形貌的实验研究

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Carbon nanotubes (CNT) were synthesized by microwave plasma chemical vapor deposition, and the formation process and morphologies of bamboo mode structures were systematically analyzed. Thin films of Fe on Si substrates were used as the catalyst, and the CNT films were characterized with electron microscopy, Raman spectroscopy, and Auger electron spectroscopy. For growth up to 15 min, the films grow with vertically aligned CNT with evidence of amorphous carbon at the top surface. For longer growth times the films exhibit a layer of amorphous carbon and a CNT mat on top of the aligned carbon nanotube 'forest.' Transmission electron microscopy measurements displayed multiwalled CNT with bamboo structure and encapsulated tips some of which contained catalyst particles. Two kinds of bamboo mode structures were observed: cone shaped, and cylindrical. The results indicate that the CNT growth is predominantly of the base growth mode, and the formation of the compartments was attributed to the difference in the bulk and surface diffusion of carbon species at the catalyst.
机译:通过微波等离子体化学气相沉积法合成了碳纳米管,并系统分析了竹模结构的形成过程和形貌。将Si衬底上的Fe薄膜用作催化剂,并通过电子显微镜,拉曼光谱和俄歇电子光谱对CNT膜进行表征。对于长达15分钟的生长,薄膜将在垂直排列的CNT上生长,并在顶部表面形成无定形碳。对于更长的生长时间,薄膜在对齐的碳纳米管“森林”的顶部具有无定形碳层和CNT垫。透射电子显微镜测量显示具有竹结构的多壁碳纳米管和封装的尖端,其中一些包含催化剂颗粒。观察到两种竹模式结构:锥形和圆柱形。结果表明,CNT的生长主要是基本的生长方式,而隔室的形成归因于碳物种在催化剂上的体积和表面扩散的差异。

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