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Macroscopic fibers of well-aligned carbon nanotubes by wet spinning

机译:湿法纺丝使排列良好的碳纳米管的宏观纤维

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摘要

A simple process to spin fibers consisting of multi-walled carbon nanotubes (CNTs) directly from their lyotropic liquid-crystalline phase is reported. Ethylene glycol is used as the lyotropic solvent, enabling a wider range of CNT types to be spun than previously. Fibers spun with CNTs and nitrogen-doped CNTs are compared. X-ray analysis reveals that nitrogen-doped CNTs have a misalignment of only +/- 7.8 degrees to the fiber axis. The tensile strength of the CNT and nitrogen-doped CNT fibers is comparable but the modulus and electrical conductivity of the are lower. The electrical conductivity of both types of CNT fibers is found to be highly anisotropic. The, p results are discussed in context of the microstructure of the CNTs and fibers.
机译:报道了一种直接从其溶致液晶相纺制由多壁碳纳米管(CNT)组成的纤维的简单方法。乙二醇用作溶致溶剂,比以前可纺制更多种类的CNT。比较了用CNT和掺氮CNT纺制的纤维。 X射线分析表明,氮掺杂的CNT与纤维轴的排列偏差仅为+/- 7.8度。 CNT和掺氮CNT纤维的拉伸强度相当,但其模量和导电率较低。发现两种类型的CNT纤维的电导率都是高度各向异性的。在CNT和纤维的微观结构的背景下讨论了p结果。

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