Song Shiqiang, Wang Jinyuan, Liu Cheng, Wang Jincheng, Zhang Yong
College of Chemistry and Chemical Engineering, Shanghai University of Engineering Science, Shanghai 201620, People's Republic of China.
Nanoscale. 2019 Aug 15;11(32):15234-15244. doi: 10.1039/c9nr05153h.
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 (>1013 Ω 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.
导热聚合物复合材料作为热管理材料在许多应用中展现出诱人的前景,如在微电子器件中。然而,传统的制备导热聚合物复合材料的方法通常具有工艺复杂的缺点。在本研究中,报道了一种基于使用无机盐作为牺牲模板的三维互连石墨烯海绵制备高导热硅橡胶复合材料的简便方法。该复合材料在极低的石墨烯负载量(1.46 wt%)下表现出1.50 W m-1 k-1的高导热率和752%的导热率增强。更重要的是,还通过相同的方法制备了高导热环氧树脂和丁苯橡胶复合材料。这些复合材料还表现出优异的电绝缘性能(>1013 Ω cm)。因此,这种有效方法被证明可广泛用于简便制备具有导热性且具有优异电绝缘性能的塑料和橡胶基体的聚合物复合材料。