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Growth Of Carbon Nanotubes Using Nanocrystalline Carbon Catalyst

机译:使用纳米晶碳催化剂生长碳纳米管

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The basic growth of carbon nanotubes (CNTs) involves dissociation of hydrocarbon molecules over a metal layer as a catalyst. Generally, the metals used for the catalyst include nickel, cobalt, gold, iron, platinum, and palladium. However, the metal catalyst used with CNTs could have a harmful influence on the electrical properties of electronic devices. Therefore, we propose the use of nanocrystalline carbon (nc-C) as the catalyst for the growth of CNTs. We used a nc-C catalyst layer deposited by the closed-field unbalanced magnetron (CFUBM) sputtering method, and CNTs were grown by the hot filament plasma-enhanced chemical vapor deposition (HF-PECVD) method with ammonia (NH_3) as a pretreatment and acetylene gas (C_2H_2) as a carbon source. The CNTs were grown on the nc-C layers pretreated with a variation of the pretreatment time. The characteristics of the pretreated nc-C layers and the grown CNTs were investigated by field emission scanning electron microscopy (FE-SEM) and atomic force microscopy (AFM) measurements. Also, the structural variation of the pretreated nc-C layers was investigated by Raman measurement. We used the nc-C catalyst without metal, and we confirmed that our CNTs were composed with only carbon elements through an EDS measurement. Also, the pretreatment time was attributed to the growth of CNTs.
机译:碳纳米管(CNT)的基本生长涉及在金属层上作为催化剂的碳氢化合物分子的解离。通常,用于催化剂的金属包括镍,钴,金,铁,铂和钯。但是,与CNT一起使用的金属催化剂可能会对电子设备的电性能产生有害影响。因此,我们建议使用纳米晶碳(nc-C)作为碳纳米管生长的催化剂。我们使用通过封闭场不平衡磁控管(CFUBM)溅射方法沉积的nc-C催化剂层,并通过热丝等离子体增强化学气相沉积(HF-PECVD)方法以氨(NH_3)作为预处理来生长CNT。乙炔气(C_2H_2)作为碳源。 CNT在预处理时间变化的nc-C层上生长。通过场发射扫描电子显微镜(FE-SEM)和原子力显微镜(AFM)测量研究了预处理的nc-C层和生长的CNT的特性。另外,通过拉曼测量研究了预处理的nc-C层的结构变化。我们使用了不含金属的nc-C催化剂,并且通过EDS测量证实了我们的CNT仅由碳元素组成。而且,预处理时间归因于CNT的生长。

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