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将具有良好取向和高纵横比的碳纳米管的服装聚合物纤维。

Clothing polymer fibers with well-aligned and high-aspect ratio carbon nanotubes.

机构信息

School of Mechanical and Aerospace Engineering, Nanyang Technological University, 50 Nanyang Avenue, Singapore 639798.

出版信息

Nanoscale. 2013 Apr 7;5(7):2870-4. doi: 10.1039/c3nr34208e.

Abstract

It is believed that the crucial step towards preparation of electrical conductive polymer-carbon nanotube (CNT) composites is dispersing CNTs with a high length-to-diameter aspect ratio in a well-aligned manner. However, this process is extremely challenging when dealing with long and entangled CNTs. Here in this study, a new approach is demonstrated to fabricate conductive polymer-CNT composite fibers without involving any dispersion process. Well-aligned CNT films were firstly drawn from CNT arrays, and then directly coated on polycaprolactone fibers to form polymer-CNT composite fibers. The conductivity of these composite fibers can be as high as 285 S m(-1) with only 2.5 wt% CNT loading, and reach 1549 S m(-1) when CNT loading is 13.4 wt%. As-prepared composite fibers also exhibit 82% retention of conductivity at a strain of 7%, and have improved mechanical properties.

摘要

人们认为,制备导电聚合物-碳纳米管(CNT)复合材料的关键步骤是将长径比高的 CNT 以良好的取向方式分散。然而,当处理长而缠结的 CNT 时,这个过程极具挑战性。在本研究中,展示了一种新的方法来制备无需任何分散过程的导电聚合物-CNT 复合纤维。首先从 CNT 阵列中拉出取向良好的 CNT 薄膜,然后直接涂覆在聚己内酯纤维上形成聚合物-CNT 复合纤维。这些复合纤维的电导率在 CNT 负载为 2.5wt%时可高达 285 S m(-1),在 CNT 负载为 13.4wt%时可高达 1549 S m(-1)。制备的复合纤维在应变 7%时仍保持 82%的电导率,并具有改善的机械性能。

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