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Highly Stretchable Conductive Polymer Composited with Carbon Nanotubes and Nanospheres

机译:具有碳纳米管和纳米球的高度可拉伸的导电聚合物

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In recent decades, stretchable conductive polymers have gained extensive interest of researchers because of their hi-tech applications in electronics, textiles and medicine devices. In this study, carbon nanotubes and carbon nanospheres, as the chemically stable dopants, were uniformly dispersed in a polyurethane matrix to develop a highly elastic and stretchable conductive polymer composite film. The nanocomposite film inherited the advantageous properties from its constituents, namely the high conductivity from carbon nanotubes and nanospheres, and the elastomeric mechanical properties from the polyurethane. The conductive polymer nanocomposite film can be uniaxially and biaxially stretched up to 50% without clearly mechanical or electrical changes. Stretching beyond 50% would result in the conductivity decreasing gradually. Therefore, the as-prepared stretchable conductive polymer nanocomposites possessed both the high conductivity and the high elasticity, which would have greater application potential in high-performance electronic circuits.
机译:近几十年来,由于电子,纺织品和药物设备的高科技应用,可拉伸的导电聚合物对研究人员进行了广泛的利益。在该研究中,作为化学稳定的掺杂剂,碳纳米管和碳纳米球均匀地分散在聚氨酯基质中以开发高度弹性和可拉伸的导电聚合物复合膜。纳米复合膜从其成分继承了有利的性质,即来自碳纳米管和纳米球的高导电性,以及来自聚氨酯的弹性机械性能。导电聚合物纳米复合膜可以是单轴的,并且在没有明显机械或电气变化的情况下高达50%的双轴拉伸。超过50%的拉伸会导致电导率逐渐降低。因此,所制备的可伸展导电聚合物纳米复合材料具有高导电性和高弹性,这在高性能电子电路中具有更大的应用势。

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