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Nanoscratch technique for aligning multiwalled carbon nanotubes synthesized by the arc discharge method in open air

机译:纳米划痕技术在户外对准电弧放电法合成的多壁碳纳米管

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摘要

Horizontally aligned and densely packed multiwalled carbon nanotubes (MWCNTs) were synthesized in an open air, without the need for a controlled atmosphere, using a rotating cathode arc discharge method with the help of a metal scraper. The physical force exerted by the scraper results in in-situ alignment of MWCNTs along the direction of scrape marks. This strategy, which enables the alignment of nanotubes in a controlled fashion to any length and direction of interest, was examined to determine the force required to align a nanotube. A model is developed to understand the alignment process. Using the nanoscratch technique to mimic this strategy, and incorporating the data obtained from the nanoscratch technique into the model developed, the minimum force required to align a MWCNT, as well as the energy required to align a gram of nanotubes, has been estimated. The method demonstrated represents an economical approach for large-scale synthesis of aligned MWCNTs at low costs.
机译:使用旋转阴极电弧放电方法,借助金属刮板,在不需要受控气氛的情况下,在露天条件下合成了水平排列且密集堆积的多壁碳纳米管(MWCNT)。刮板施加的物理力导致MWCNT沿刮痕方向原位对齐。检查了该策略,该策略使得能够以受控的方式将纳米管对准感兴趣的任何长度和方向,以确定对准纳米管所需的力。开发模型以了解对齐过程。使用纳米划痕技术模仿这种策略,并将从纳米划痕技术获得的数据整合到开发的模型中,已估计出对准MWCNT所需的最小力以及对准一克纳米管所需的能量。所证明的方法代表了一种低成本低成本大规模合成取向多壁碳纳米管的经济方法。

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