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Drastic modification of the piezoresistive behavior of polymer nanocomposites by using conductive polymer coatings

机译:通过使用导电聚合物涂层彻底改变聚合物纳米复合材料的压阻性能

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摘要

We obtained highly conductive nanocomposites by adding conductive polymer poly(3,4-ethylenedioxythiophene)poly(styrenesulfonate) (PEDOT/PSS)-coated carbon nanotubes (CNTs) to pristine insulating Polycarbonate. Because the PEDOT/PSS ensures efficient charge transfer both along and between the CNTs, we could attribute the improvement in electrical conductivity to coating. In addition to improving the electrical conductivity, the coating also modified the piezoresistive behavior of the nanocomposites compared to the material with pristine uncoated CNTs: whereas CNT/Polycarbonate samples exhibited a very strong piezoresistive effect, PEDOT/PSS-coated MWCNT/Polycarbonate samples exhibited very little piezoresistivity. We studied this change in piezoresistive behavior in detail by investigating various configurations of filler content. We investigated how this observation could be explained by changes in the microstructure and in the conduction mechanism in the interfacial regions between the nanofillers. Our study suggests that tailoring the piezoresistive response to specific application requirements is possible.
机译:通过将导电聚合物聚(3,4-乙撑二氧噻吩)聚(苯乙烯磺酸盐)(PEDOT / PSS)涂覆的碳纳米管(CNT)添加到原始绝缘聚碳酸酯中,我们获得了高导电性纳米复合材料。由于PEDOT / PSS确保了沿CNT以及在CNT之间的有效电荷转移,因此我们可以将导电性的提高归因于涂层。除了提高电导率外,与未涂覆原始碳纳米管的材料相比,该涂层还改善了纳米复合材料的压阻性能:而CNT /聚碳酸酯样品表现出非常强的压阻效应,而PEDOT / PSS涂覆的MWCNT /聚碳酸酯样品表现出非常强的压阻作用。压阻小。我们通过研究填料含量的各种配置,详细研究了压阻行为的这种变化。我们研究了如何通过纳米填料之间的界面区域的微观结构和传导机制的变化来解释这一观察结果。我们的研究表明,可以根据特定的应用要求定制压阻响应。

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