Graphene as an Interfacial Layer for Improving Cycling Performance of Si Nanowires in Lithium-Ion Batteries

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초록

Managing interfacial instability is crucial for enhancing cyclability in lithium-ion batteries (LIBs), yet little attention has been devoted to this issue until recently. Here, we introduce graphene as an interfacial layer between the current collector and the anode composed of Si nanowires (SiNWs) to improve the cycling capability of LIBs. The atomically thin graphene lessened the stress accumulated by volumetric mismatch and inhibited interfacial reactions that would accelerate the fatigue of Si anodes. By simply incorporating graphene at the interface, we demonstrated significantly enhanced cycling stability for SiNW-based LIB anodes, with retentions of more than 2400 mAh/g specific charge capacity over 200 cycles, 2.7 times that of SiNWs on a bare current collector.

키워드

Grapheneinterfacesiliconanodenanowireslithium ion batteriesAIR BATTERIESSILICONANODESCAPACITYGROWTHNANOPARTICLESDEPOSITIONGRAPHITESTORAGE
제목
Graphene as an Interfacial Layer for Improving Cycling Performance of Si Nanowires in Lithium-Ion Batteries
저자
Xia, FanKwon, SunsangLee, Won WooLiu, ZhimingKim, SuhanSong, TaeseupChoi, Kyoung JinPaik, UngyuPark, Won Il
DOI
10.1021/acs.nanolett.5b02482
발행일
2015-10
유형
Article
저널명
Nano Letters
15
10
페이지
6658 ~ 6664