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Direct growth of vertically aligned carbon nanotubes on stainless steel by plasma enhanced chemical vapor deposition

机译:通过等离子体增强化学气相沉积直接在不锈钢上直接生长垂直对准的碳纳米管

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摘要

Applications such as energy storage and field emission devices demand direct growth of vertically aligned carbon nanotube (VACNT) arrays on conducting metal substrates, which has remained a challenge for a long time. Here, we report a controlled growth of VACNT arrays on a stainless steel (SS) substrate via dc plasma enhanced chemical vapor deposition without the addition of a metal catalyst layer. TEM and AFM examinations revealed the occurrence of nano-hills formed on the SS surface during heating process in an NH3 environment. This is a key step for uniform growth of VACNTs. The VACNTs have uniform length and diameter, good alignment, and uniform coverage over the substrate surface, superior to reported results. The particle on the tip of most of the VACNTs was found to be single crystalline Fe metal, although a few other VACNTs were found to have an alloy of Fe, Ni, Mn, and Cr at the tips. This highlights the dominating catalytic behavior of Fe over Ni, Cr, and Mn, which are the elemental composition of the nano-hills. The high quality VACNTs may find unique applications such as electron field emitters and dense nanoscale anode materials for lithium ion batteries.
机译:诸如能量存储和场发射装置的应用需要垂直对准的碳纳米管(VACNT)阵列在导电金属基板上的直接生长,这仍然长时间留下挑战。这里,我们通过DC等离子体增强的化学气相沉积报告了在不锈钢(SS)基板上的VACT阵列的受控生长,而不加入金属催化剂层。 TEM和AFM检查显示在NH3环境中的加热过程中在SS表面上形成的纳米山的发生。这是均匀生长疫苗的关键步骤。疫污具有均匀的长度和直径,良好的对准,并且在基材表面上均匀覆盖,优于报道的结果。发现大部分疫污尖端的颗粒是单晶Fe金属,但发现少量其他空穴具有尖端的Fe,Ni,Mn和Cr的合金。这突出了Ni,Cr和Mn的Fe催化行为,这是纳米山的元素组成。高质量的疫污可以找到独特的应用,例如用于锂离子电池的电子场发射器和致密的纳米级阳极材料。

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