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Graphene-Based Thermal Interface Materials: An Application-Oriented Perspective on Architecture Design

机译:基于石墨烯的热界面材料:面向应用的建筑设计视角

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摘要

With the increasing power density of electrical and electronic devices, there has been an urgent demand for the development of thermal interface materials (TIMs) with high through-plane thermal conductivity for handling the issue of thermal management. Graphene exhibited significant potential for the development of TIMs, due to its ultra-high intrinsic thermal conductivity. In this perspective, we introduce three state-of-the-art graphene-based TIMs, including dispersed graphene/polymers, graphene framework/polymers and inorganic graphene-based monoliths. The advantages and limitations of them were discussed from an application point of view. In addition, possible strategies and future research directions in the development of high-performance graphene-based TIMs are also discussed.
机译:随着电气和电子设备的功率密度的增加,迫切需要开发具有高贯穿平面热导率的热界面材料(TIM),以解决热管理问题。石墨烯因其超高的固有导热率而具有开发TIM的巨大潜力。从这个角度出发,我们介绍了三种基于石墨烯的先进TIM,包括分散的石墨烯/聚合物,石墨烯骨架/聚合物和无机石墨烯整体材料。从应用的角度讨论了它们的优缺点。此外,还讨论了高性能石墨烯基TIM的开发中可能的策略和未来的研究方向。

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