功能高分子材料教育部重点实验室

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陈永胜课题组 | CARBON

发布人:功能高分子材料教育部重点实验室    发布时间:2018/12/06   浏览次数:

High ampacity of superhelix graphene/copper nanocomposite wires by a synergistic growth-twisting-drawing strategy

Zhao, K (Zhao, Kai)1,2,3 ] Zhang, TF (Zhang, Tengfei)1,2,3 ] Ren, A (Ren, Ai)1,2,3 ] Yang, Y (Yang, Yang)1,2,3 ] Xiao, PS (Xiao, Peishuang)1,2,3 ] Ge, Z (Ge, Zhen)1,2,3 ] Ma, YF (Ma, Yanfeng)1,2,3 ] Chen, YS (Chen, Yongsheng)1,2,3 ]

CARBON, 2019, 141: 198-208

DOI: 10.1016/j.carbon.2018.09.040

 WOS:000450312600021

Abstract

Nanocarbon materials can provide effective reinforcement to a surrounding composite matrix. However, the fabrication of nanocarbon/metal composites with superior comprehensive properties remains challenging. Here, we developed a simple cyclic growth-twisting-drawing method to fabricate superhelix graphene/copper nanocomposite wires composed of massive, strongly bonded, and super-helically arranged fine copper fibers with interfacial graphene layers. The obtained nanocomposite wires with a small graphene volume fraction of similar to 0.32% exhibit a largely improved current carrying capacity of 5.8 x 10(10) A m(-2), similar to 2.6 times of that of pure copper wires. Furthermore, the electrical conductivity, 5.01 x 10(7) S m(-1), is comparable to that of pure copper. These nanocomposite wires also exhibit improved strength and ductility, 10% and 80% increases compared with that of pure copper wires. These multiple enhanced properties can be attributed to the microscopic superhelix structure with the interfacial graphene layers embedded in the entire multi-level structure. With their largely improved current carrying capacity and mechanical reinforcement, these highly electrically conductive nanocomposite wires promise widely potential applications in the areas of heavy duty, high power electronics and electricity transmission. (C) 2018 Elsevier Ltd. All rights reserved.