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通过扭转和收缩方法制造的高强度碳纳米管纱线。

Carbon nanotube yarns with high tensile strength made by a twisting and shrinking method.

机构信息

Department of Physics, Tsinghua University, Beijing, People's Republic of China.

出版信息

Nanotechnology. 2010 Jan 29;21(4):045708. doi: 10.1088/0957-4484/21/4/045708. Epub 2009 Dec 16.

Abstract

We report a simple and continuous spinning method that combines twisting and shrinking processes to produce carbon nanotube yarns. In this method, a yarn freshly spun from a super-aligned carbon nanotube array is first twisted and then passes through a volatile solvent for shrinking. The as-produced yarn consists of densely packed carbon nanotubes, and thus has a tensile strength up to about 1 GPa. The tensile strength depends on the diameter and the twisting angle of the yarn. Different kinds of solvents, such as water, ethanol, and acetone, are used to shrink the twisted yarns, and acetone shows the best shrinking effect. The origin of the solvent shrinking effect is investigated. Our method is favorable for continuous mass production of high strength carbon nanotube yarns with a wide range of diameters, especially ultra-thin yarns.

摘要

我们报告了一种简单而连续的纺丝方法,它结合了扭曲和收缩过程,以生产碳纳米管纱线。在这种方法中,从超级排列的碳纳米管阵列中新纺出的纱线首先被扭曲,然后通过挥发性溶剂进行收缩。所生产的纱线由紧密堆积的碳纳米管组成,因此具有高达约 1 GPa 的拉伸强度。拉伸强度取决于纱线的直径和扭曲角度。不同种类的溶剂,如水、乙醇和丙酮,用于收缩扭曲的纱线,而丙酮显示出最好的收缩效果。研究了溶剂收缩效应的起源。我们的方法有利于连续大规模生产具有广泛直径的高强度碳纳米管纱线,特别是超细线。

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