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Using in-Situ Polymerization of Conductive Polymers to Enhance the Electrical Properties of Solution-Processed Carbon Nanotube Films and Fibers

机译:使用导电聚合物的原位聚合来增强固溶处理的碳纳米管薄膜和纤维的电性能

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摘要

Single-walled carbon nanotubes/polymer composites typically have limited conductivity due to a low concentration of nanotubes and the insulating nature of the polymers used. Here we combined a method to align carbon nanotubes with in-situ polymerization of conductive polymer to form composite films and fibers. Use of the conducting polymer raised the conductivity of the films by 2 orders of magnitude. On the other hand, CNT fiber formation was made possible with in-situ polymerization to provide more mechanical support to the CNTs from the formed conducting polymer. The carbon nanotube/conductive polymer composite films and fibers had conductivities of 3300 and 170 S/cm, respectively. The relatively high conductivities were attributed to the polymerization process, which doped both the SWNTs and the polymer. In-situ polymerization can be a promising solution-processable method to enhance the conductivity of carbon nanotube films and fibers.
机译:单壁碳纳米管/聚合物复合材料通常由于纳米管的浓度低和所用聚合物的绝缘性而具有有限的导电性。在这里,我们结合了一种将碳纳米管与导电聚合物进行原位聚合以形成复合膜和纤维的方法。导电聚合物的使用将膜的电导率提高了两个数量级。另一方面,通过原位聚合使CNT纤维的形成成为可能,以从形成的导电聚合物向CNT提供更多的机械支撑。碳纳米管/导电聚合物复合膜和纤维的电导率分别为3300和170 S / cm。较高的电导率归因于聚合过程,该过程同时掺杂了SWNT和聚合物。原位聚合可以是一种有前景的可溶液加工的方法,可以提高碳纳米管薄膜和纤维的导电性。

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