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超硬石墨烯泡沫作为环氧树脂的三维导电填料

Ultra-Stiff Graphene Foams as Three-Dimensional Conductive Fillers for Epoxy Resin.

作者信息

Han Xiao, Wang Tuo, Owuor Peter Samora, Hwang Sung Hoon, Wang Chao, Sha Junwei, Shen Lulu, Yoon Jongwon, Wang Weipeng, Salvatierra Rodrigo Villegas, Ajayan Pulickel M, Shahsavari Rouzbeh, Lou Jun, Zhao Yan, Tour James M

机构信息

School of Materials Science and Engineering , Beihang University , Beijing 100191 , China.

Center for Composite Materials and Structures , Harbin Institute of Technology , Harbin 150080 , China.

出版信息

ACS Nano. 2018 Nov 27;12(11):11219-11228. doi: 10.1021/acsnano.8b05822. Epub 2018 Nov 13.

Abstract

Conductive epoxy composites are of great interest due to their applications in electronics. They are usually made by mixing powdered conductive fillers with epoxy. However, the conductivity of the composite is limited by the low filler content because increasing filler content causes processing difficulties and reduces the mechanical properties of the epoxy host. We describe here the use of ultra-stiff graphene foams (uGFs) as three-dimensional (3D) continuous conductive fillers for epoxy resins. The powder metallurgy method was used to produce the dense uGFs monoliths that resulted in a very high filler content of 32 wt % in the uGF-epoxy composite, while the density of epoxy was only increased by 0.09 g/cm. The composite had an electrical conductivity of 41.0 ± 6.3 S/cm, which is among the highest of all of the polymer-based composites with non-conductive polymer matrices and comparable with the conductive polymer matrices reported to date. The compressive modulus of the composite showed a remarkable improvement of >1700% compared to pure epoxy. We have demonstrated that the 3D uGF filler substantially improves the conductivity and reinforces the polymer matrix with a high filler content while retaining a density similar to that of the epoxy alone.

摘要

导电环氧复合材料因其在电子领域的应用而备受关注。它们通常是通过将粉末状导电填料与环氧树脂混合制成的。然而,复合材料的导电性受到低填料含量的限制,因为增加填料含量会导致加工困难并降低环氧树脂基体的机械性能。我们在此描述了使用超硬石墨烯泡沫(uGFs)作为环氧树脂的三维(3D)连续导电填料。采用粉末冶金法制备了致密的uGFs整体材料,使得uGF-环氧复合材料中的填料含量非常高,达到32 wt%,而环氧树脂的密度仅增加了0.09 g/cm³。该复合材料的电导率为41.0±6.3 S/cm,在所有以非导电聚合物为基体的聚合物基复合材料中处于最高水平之一,与迄今报道的导电聚合物基体相当。与纯环氧树脂相比,该复合材料的压缩模量有显著提高,提高了>1700%。我们已经证明,3D uGF填料在保持与纯环氧树脂相似密度的同时,能显著提高导电性并以高填料含量增强聚合物基体。

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