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Silicone Rubber/Graphite Nanosheet Electrically Conducting Nanocomposite with a Low Percolation Threshold

机译:具有低渗透阈值的硅橡胶/石墨纳米片导电纳米复合材料

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摘要

A novel electrically conductive nanocomposite was successfully fabricated by dispersing homogeneously conductive graphite nanosheets(GN)in an insulating silicone rubber(SR)matrix.GN were prepared by powdering expanded graphite with sonication in aqueous alcoholic solution.The particular geometry of GN 30-80 nm in thickness with high aspect ratio contributes to the advantage of forming the conducting network,so that the percolation threshold of SR/GN nanocomposite is about 0.009,much lower than that of composites with conventional graphite.The SR/GN nanocomposite presents a remarkable piezoresistive behavior under much low pressure,related to the low elastic modulus of the composite.The elastic modulus of the nanocomposite with various GN content and at the different speed of compression was discussed.
机译:通过将均相导电的石墨纳米片(GN)分散在绝缘的硅橡胶(SR)基质中,成功制备了一种新型的导电纳米复合材料.GN是通过将膨化的石墨粉在酒精水溶液中超声处理而制成的.GN的特定几何形状为GN 30-80 nm具有高长径比的厚度有助于形成导电网络,因此SR / GN纳米复合材料的渗滤阈值约为0.009,远低于常规石墨复合材料的渗滤阈值。SR/ GN纳米复合材料表现出显着的压阻性能讨论了不同GN含量和不同压缩速度下纳米复合材料的弹性模量。

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