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A facile route to fabricate thermally conductive and electrically insulating polymer composites with 3D interconnected graphene at an ultralow filler loading

机译:简单的路线制备导热和电绝缘聚合物复合材料与3 d互连超低的石墨烯填充加载

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摘要

Thermally conductive polymer composites show attractive prospects as thermal management materials in many applications such as microelectronic devices. However, traditional approaches in the preparation of thermally conductive polymer composites usually have the disadvantages of complex processes. In this study, a facile method for highly thermally conductive silicone rubber composites is reported, based on 3D interconnected graphene sponges by using an inorganic salt as a sacrificial template. The composites exhibit a high thermal conductivity of 1.50 W m(-1) k(-1) and a thermal conductivity enhancement of 752% at a very low graphene loading of 1.46 wt%. More significantly, highly thermally conductive epoxy and styrene-butadiene rubber composites are also fabricated by the same method. The composites also show excellent electrical insulating properties (>10(13) omega cm). Thus, this effective method is proved to be widely used for the facile fabrication of polymer composites of both plastic and rubber matrices which are thermally conductive and have excellent electrical insulating properties.
机译:导热高分子复合材料诱人的前景,热管理材料等许多应用程序微电子设备。方法制备的热导电聚合物复合材料通常有缺点的复杂过程。研究中,一个简单的方法非常热导电硅橡胶复合材料报道,基于3 d互连的石墨烯通过使用一个无机盐作为海绵牺牲模板。高导热系数为1.50 W m (1) k (1)和热导率提高752%石墨烯负载很低为1.46 wt %。值得注意的是,高导热环氧树脂和丁苯橡胶复合材料也通过同样的方法制作的。也显示良好的电绝缘属性(> 10(13)ω厘米)。有效的方法是广泛用于聚合物复合材料的简单制造塑料和橡胶的矩阵导热欢迎并且有很出色的电绝缘性能。

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