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Highly oriented vertically aligned carbon nanotubes via chemical vapour deposition for key potential application in CNT ropes

机译:通过化学气相沉积获得的高度定向的垂直排列的碳纳米管,可用于CNT绳中的关键电位

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摘要

The remarkable properties of highly oriented vertically aligned carbon nanotubes (CNTs) make them attractive for electrical applications, especially for CNT ropes. In this paper, we describe the process to grow long oriented CNT arrays to improve the electrical properties of the devices based on CNTs. Chemical vapour deposition was used to deposit highly oriented CNTs using camphor oil as a carbon source and argon and hydrogen gas as carrier gases to grow perpendicular CNTs on the surface of the silicon substrate in presence of ferrocene as a metallic catalyst. Images obtained by field emission SEM indicate the formation mechanism of oriented CNTs with high morphological purity of nanotubes, which depends significantly on the deposition time and applied temperature to the furnaces. The TEM images confirm synthesis of multiwall CNTs (MWCNTs). This method might be an effective method of producing highly oriented MWCNTs in different aspect ratios.
机译:高度定向的垂直排列的碳纳米管(CNT)的卓越性能使其对电气应用特别是CNT绳索具有吸引力。在本文中,我们描述了生长长取向的CNT阵列以改善基于CNT的器件电性能的过程。化学气相沉积用于使用樟脑油作为碳源,氩气和氢气作为载气沉积高度取向的CNT,从而在二茂铁作为金属催化剂的情况下在硅衬底的表面上生长垂直的CNT。通过场发射SEM获得的图像表明具有高形态纯度的纳米管的取向CNT的形成机理,其显着取决于沉积时间和施加到炉子的温度。 TEM图像证实了多壁CNT(MWCNT)的合成。该方法可能是生产不同纵横比的高度取向的MWCNT的有效方法。

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