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Anisotropic conductive films based on highly aligned polyimide fibers containing hybrid materials of graphene nanoribbons and carbon nanotubes

机译:基于高度的各向异性导电膜聚酰亚胺纤维含有混合保持一致石墨烯带的制作都和碳材料纳米管

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摘要

Anisotropic electrically conductive films (PI-GNR/CNT) consisting of highly aligned polyimide (PI) composite fibers with graphene nanoribbon (GNR) and carbon nanotube (CNT) (GNR/CNT) hybrids as nano-fillers have been prepared by electrospinning. The GNR/CNT hybrids used here were prepared by one-step partial unzipping of multi-walled CNTs, in which, with the residual CNTs bonded on the randomly arranged GNR sheets, not only the aggregation of GNR sheets was greatly prevented but also an electrically conductive pathway with good conductivity was effectively formed with the CNTs acting as linking bridges between different GNRs. Due to the three-dimensional (3D) conductive network structure of the GNR/CNT hybrid and fine dispersion and alignment inside the PI fibers, as well as the good interfacial interaction between the GNR/CNT hybrid and the PI matrix, PI-GNR/CNT composite films exhibit a unique property of anisotropic electrical conductivity of 8.3 x 10(-2) S cm(-1) in the parallel direction along the fibers and 7.2 x 10(-8) S cm(-1) in the perpendicular direction, which may open the way for wide potential applications of anisotropic conductive nanomaterials in practical production and scientific research fields.
机译:各向异性导电膜(PI-GNR /问)组成的高度一致聚酰亚胺(PI)与石墨烯复合纤维nanoribbon (GNR)和碳纳米管(CNT)(GNR / CNT)混合动力车综合由电纺。这里使用被一步部分做好准备解的多壁碳纳米管,,剩余碳纳米管结合随机安排GNR床单,不仅GNR的聚合床单是大大防止也是良好的导电通路电导率是有效地与碳纳米管形成作为不同GNRs之间连接的桥梁。由于三维(3 d)导电网络结构GNR /问混合动力和罚款色散和对齐在π纤维良好的界面之间的相互作用GNR / CNT混合和π矩阵,PI-GNR /问复合薄膜表现出独特的性质各向异性导电性的8.3 x10(2)年代厘米(1)平行的方向纤维和7.2 x 10 (8) S cm (1)垂直方向,打开方式各向异性的广泛的应用前景导电纳米材料在实际生产和科学研究领域。

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