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Enhanced electrical conductivity in graphene-filled polycarbonate nanocomposites by microcellular foaming with sc-CO2

机译:通过sc-CO2微孔发泡提高石墨烯填充的聚碳酸酯纳米复合材料的电导率

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摘要

Electrically conductive polycarbonate (PC) foams containing a low concentration of graphene nanoplatelets (0.5 wt.%) were produced with variable range of expansion ratio by applying a high-pressure batch foaming process using sc-CO2. The structure of the foams was assessed by means of SEM, AFM and WAXS, and the electrical conductivity was measured in the foam growing direction. Results showed that electrical conductivity of PC composite foams remarkably increased when compared to that of non-foamed PC composite, with both the electrical conductivity and the main cell size of the foams being directly affected by the resultant expansion ratio of the foam. This interesting result could be explained by the development of an interconnected graphene nanoparticle network composed by increasingly well-dispersed and reoriented graphene nanoplatelets, which was developed into the solid fraction of the foam upon foaming by sudden depressurising of the plasticised CO2-saturated PC preform. Some evidences of morphological changes in the graphene nanoplatelets after foaming were obtained by analysing variations in graphene's (0 0 2) diffraction plane, whose intensity decreased with foaming. A reduction of the average number of layers in the graphene nanoplatelets was also measured, both evidences indicating that improved dispersion of graphene nanoparticles existed in the PC composite foams. As a result, foams with a proper combination of low density and enhanced electrical conductivity could be produced, enabling them to be used in applications such as electromagnetic interference shielding.
机译:通过使用sc-CO2进行高压间歇发泡工艺,可以生产出具有低浓度膨胀比范围的低浓度石墨烯纳米片(0.5 wt。%)的导电聚碳酸酯(PC)泡沫。借助于SEM,AFM和WAXS评估泡沫的结构,并在泡沫生长方向上测量电导率。结果表明,与未发泡的PC复合材料相比,PC复合泡沫材料的电导率显着提高,并且泡沫的电导率和主孔尺寸都直接受到泡沫的最终膨胀率的影响。这个有趣的结果可以用互连石墨烯纳米粒子网络的发展来解释,该网络由越来越分散和重新定向的石墨烯纳米片组成,通过突然降压可塑化的CO2饱和PC预成型件,发泡后,该纳米颗粒网络发展成为泡沫的固体部分。通过分析石墨烯(0 0 2)衍射平面的变化,发现其发泡后强度下降,从而获得了发泡后石墨烯纳米片形态变化的一些证据。还测量了石墨烯纳米片中平均层数的减少,这两个证据表明,PC复合泡沫材料中存在石墨烯纳米粒子的改善的分散性。结果,可以产生具有低密度和增强的电导率的适当组合的泡沫,使其能够用于诸如电磁干扰屏蔽的应用中。

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