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Multilayer Graphene Enables Higher Efficiency in Improving Thermal Conductivities of Graphene/Epoxy Composites

机译:多层石墨烯可提高石墨烯/环氧树脂复合材料的热导率的效率

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摘要

The effects of number of graphene layers (n) and size of multilayer graphene sheets on thermal conductivities (TCs) of their epoxy composites are investigated. Molecular dynamics simulations show that the in-plane TCs of graphene sheets and the TCs across the graphene/epoxy interface simultaneously increase with increasing n. However, such higher TCs of multilayer graphene sheets will not translate into higher TCs of bulk composites unless they have large lateral sizes to maintain their aspect ratios comparable to the monolayer counterparts. The benefits of using large, multilayer graphene sheets are confirmed by experiments, showing that the composites made from graphite nanoplatelets (n > 10) with over 30 mu m in diameter deliver a TC of similar to 1.5 W m(-1) K-1 at only 2.8 vol %, consistently higher than those containing monolayer or few-layer graphene at the same graphene loading. Our findings offer a guideline to use cost-effective multilayer graphene as conductive fillers for various thermal management applications.
机译:研究了石墨烯层数(n)和多层石墨烯片的尺寸对其环氧复合材料导热系数(TCs)的影响。分子动力学模拟表明,石墨烯片的面内TC和跨石墨烯/环氧树脂界面的TC随着n的增加而同时增加。但是,除非多层石墨烯片材具有较大的横向尺寸以保持其纵横比与单层复合材料相当,否则多层石墨烯片材的此类较高TC不会转化为整体复合材料的较高TC。实验证实了使用大型多层石墨烯片的好处,表明由直径超过30微米的石墨纳米片(n> 10)制成的复合材料的TC类似于1.5 W m(-1)K-1含量仅为2.8 vol%,始终高于在相同石墨烯负载下含有单层或几层石墨烯的那些。我们的发现为在各种热管理应用中使用经济高效的多层石墨烯作为导电填料提供了指导。

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