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Graphene-Assisted Thermal Interface Materials with a Satisfied Interface Contact Level Between the Matrix and Fillers

机译:石墨烯辅助的热界面材料基质与填料之间的界面接触度令人满意

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摘要

Reduced graphene oxide (RGO) and three-dimensional graphene networks (3DGNs) are adopted to improve the performance of thermal interface materials (TIMs). Therein, the 3DGNs provide a fast transport network for phonons, while the RGO plays as a bridge to enhance the phonon transport ability at the interface between the filler and matrix. The types of surface functional groups of the RGO are found to exert a remarkable influence on the resulting thermal performance; the carboxyl groups are found in the optimal selection to promote the transport process at the interface area because a strong chemical bond will form between the graphene basal plane and epoxy resin (ER) through this kind of group. The resulting thermal conductivity reaches 6.7 Wm−1 K−1 after optimizing the mass fraction and morphology of the filler, which is 3250% higher than that of the pristine ER. Moreover, the mechanical properties of these as-prepared TIMs are also detected, and the specimens by using the RGO(OOH) filler display the better performances.Electronic supplementary materialThe online version of this article (10.1186/s11671-018-2704-1) contains supplementary material, which is available to authorized users.
机译:采用还原氧化石墨烯(RGO)和三维石墨烯网络(3DGNs)来改善热界面材料(TIM)的性能。其中,3DGN为声子提供了快速的传输网络,而RGO充当了桥梁,以增强填充剂与基质之间的界面处的声子传输能力。发现RGO的表面官能团的类型对所得的热性能产生显着影响。羧基是在最佳选择中发现的,以促进界面区域的传输过程,因为通过这种基团,石墨烯基面与环氧树脂(ER)之间将形成牢固的化学键。优化填料的质量分数和形态后,最终的热导率达到6.7 Wm -1 K -1 ,比原始ER高3250%。此外,还检测了这些制备的TIM的机械性能,并且使用RGO(OOH)填料的样品表现出更好的性能。电子补充材料本文的在线版本(10.1186 / s11671-018-2704-1)包含补充材料,授权用户可以使用。

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