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首页> 外文期刊>RSC Advances >Bioinspired highly electrically conductive graphene-epoxy layered composites
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Bioinspired highly electrically conductive graphene-epoxy layered composites

机译:生物启发的高导电性石墨烯-环氧树脂层状复合材料

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Inspired by the nano/micro-scale hierarchical structure of nacre, we developed a new method for fabricating highly electrically conductive graphene-epoxy layered composites. In this new method, the graphene loading can be easily controlled, and the intrinsic three-dimensional network of graphene in the composites results in high electrical conductivity. Through effective surface modification, the interface strength between graphene and epoxy matrix was dramatically improved, leading to the 23fold improvement in tensile strength, 136-fold in Young's modulus, and 8-fold in electrical conductivity compared with the pure graphene foam. These high performance bioinspired graphene-epoxy layered composites have a great potential for applications in electromagnetic interference (EMI) shielding, aerospace, and other electrical devices.
机译:受珍珠母的纳米/微米级分层结构的启发,我们开发了一种新的制造高导电性石墨烯-环氧树脂层状复合材料的方法。在这种新方法中,可以轻松控制石墨烯的负载,并且复合材料中石墨烯的固有三维网络可实现高电导率。通过有效的表面改性,石墨烯与环氧基质之间的界面强度得到了显着提高,与纯石墨烯泡沫相比,抗张强度提高了23倍,杨氏模量提高了136倍,电导率提高了8倍。这些高性能的生物启发型石墨烯-环氧树脂层状复合材料在电磁干扰(EMI)屏蔽,航空航天和其他电子设备中具有广阔的应用前景。

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