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Anisotropic buckypaper through shear-induced mechanical alignment of carbon nanotubes in water

机译:通过剪切诱导水中碳纳米管的机械取向各向异性的布基纸

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摘要

A simple method for aligning nanotubes in buckypaper with a modified Taylor-Couette system is reported. Using shear forces produced by a rotating cylinder to orient multi-walled carbon nanotubes in a surfactant-assisted aqueous dispersion, the suspended nanotubes are simultaneously aligned and filtered. The resulting buckypaper is composed of nanotubes with preferential orientation in the direction of flow and possesses anisotropic electrical and mechanical properties, which are both enhanced parallel to the direction of orientation. The technique presented here requires no specialized equipment and can be implemented with any type of carbon nanotube synthesized by any method. Furthermore, the size of the buckypaper sheets can be easily increased by adjusting the length and diameter of the cylinders in the setup, offering the possibility for low-cost production of large quantities of oriented buckypaper.
机译:报道了一种使用改良的泰勒-库埃特(Taylor-Couette)系统对齐布基纸中纳米管的简单方法。使用旋转圆柱体产生的剪切力将多壁碳纳米管定向在表面活性剂辅助的水分散体中,同时将悬浮的纳米管排列和过滤。所得的布基纸由在流动方向上具有优先取向的纳米管组成,并具有各向异性的电气和机械性能,均与取向方向平行地增强。这里介绍的技术不需要专门的设备,并且可以通过任何方法合成的任何类型的碳纳米管来实施。此外,通过在设置中调节滚筒的长度和直径,可以容​​易地增加布基纸的尺寸,从而提供了低成本生产大量取向布基纸的可能性。

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