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Reduced Graphene Oxide Embedded with MQ Silicone Resin Nano-Aggregates for Silicone Rubber Composites with Enhanced Thermal Conductivity and Mechanical Performance

机译:嵌有MQ硅树脂纳米骨料的还原石墨烯氧化物具有增强的导热性和机械性能可用于硅橡胶复合材料

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摘要

With developments of the electronics industry, more components are being included in electronic devices, which has led to challenges in thermal management. Using reduced graphene oxide embedded with MQ silicone resin (RGO/MQ) nano-aggregates as the composite filler and silicone rubber (SR) as the matrix, a simple approach is designed to prepare RGO/MQ/SR composites. Reduced graphene oxide (RGO) was first used as a substrate for the growth of MQ silicone resin by hybridization, forming sandwich-like micro structured RGO/MQ nano-aggregates successfully. Then, RGO/MQ was integrated into α,ω-dihydroxylpolydimethylsiloxane based on the in situ solvent-free blending method, followed by condensation and vulcanization, fabricating the final RGO/MQ/SR composites. The effective strategy could enhance the adaptability between graphene and silicone matrix under external stimuli at room temperature by embedding nanoscale MQ into the interface of graphene/silicone as the buffer layer. Obvious improvements were found in both thermal conductivity and mechanical properties due to excellent dispersion and interfacial compatibility of RGO/MQ in the host materials. These attractive results suggest that this RGO/MQ/SR composite has potential as a thermal interface material for heat dissipation applications.
机译:随着电子工业的发展,电子设备中包含了更多的组件,这导致了热管理方面的挑战。使用嵌入了MQ硅树脂(RGO / MQ)纳米聚集体的还原氧化石墨烯作为复合填料和硅橡胶(SR)作为基质,设计了一种简单的方法来制备RGO / MQ / SR复合材料。还原氧化石墨烯(RGO)首先用作通过杂交生长MQ硅树脂的基质,成功地形成了三明治状的微结构化RGO / MQ纳米聚集体。然后,基于原位无溶剂共混方法,将RGO / MQ整合到α,ω-二羟基聚二甲基硅氧烷中,然后缩合和硫化,从而制造出最终的RGO / MQ / SR复合材料。通过将纳米级的MQ嵌入到石墨烯/硅酮作为缓冲层的界面中,该有效策略可增强室温下外部刺激下石墨烯与有机硅基质之间的适应性。由于RGO / MQ在基质材料中具有出色的分散性和界面相容性,因此在导热性和机械性能方面均得到了明显的改善。这些诱人的结果表明,这种RGO / MQ / SR复合材料具有作为散热应用的热界面材料的潜力。

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