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Electrical conductivity of synergistically hybridized nanocomposites based on graphite nanoplatelets and carbon nanotubes

机译:基于石墨纳米片和碳纳米管的协同杂交纳米复合材料的电导率

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In this investigation, a recent model for assessing the electrical conductivity of nanocomposites comprising a single type of conductive nanofiller was expanded to cases with mixtures of nanofillers. The extended model considers electron tunneling as the effective mechanism for insulator-conductor transition. The model was validated with relevant experimental data based on a mono-nanofiller. Using the extended model, the effective electrical conductivity of a nanocomposite comprising both graphite nanoplatelets and carbon nanotubes was investigated. It was observed that the hybridized nanocomposites filled with a mixture of these conductive nanofillers attain, synergistically, enhanced electrical conductivities at lower volume fractions. The lower filler contents assist in preserving the intrinsic properties of the host polymer in support of several applications. It was also observed that the relative aspect ratios of the conductive fillers play significant roles on the electrical conductivity of the hybrid nanocomposite. Simulations revealed that, generally, the addition of minimal amounts of a higher aspect ratio auxiliary phase to a lower aspect ratio main phase enhances the electrical conductivity of the composite by orders of magnitude
机译:在这项研究中,用于评估包含单一类型导电纳米填料的纳米复合材料电导率的最新模型已扩展到包含纳米填料混合物的情况。扩展模型将电子隧穿视为绝缘体-导体过渡的有效机制。基于单纳诺菲尔的相关实验数据验证了该模型。使用扩展模型,研究了同时包含石墨纳米片和碳纳米管的纳米复合材料的有效电导率。观察到,用这些导电纳米填料的混合物填充的杂交纳米复合材料在较低的体积分数下协同地获得了增强的电导率。较低的填料含量有助于保持主体聚合物的固有特性,以支持多种应用。还观察到,导电填料的相对纵横比对杂化纳米复合材料的电导率起重要作用。模拟表明,通常,将少量高纵横比辅助相添加到低纵横比主相中可以使复合材料的电导率提高几个数量级。

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