详细信息
One-Step Electrodeposition of Layer by Layer Architectural Si-Graphene Nanocomposite Anode of Lithium Ion Battery with Enhanced Cycle Performance ( SCI-EXPANDED收录 EI收录)
文献类型:期刊文献
英文题名:One-Step Electrodeposition of Layer by Layer Architectural Si-Graphene Nanocomposite Anode of Lithium Ion Battery with Enhanced Cycle Performance
作者:Shen, Qixin[1];Wang, Qiang[1];Guo, Qingjun[1];Guan, Shiyou[2];Li, Bing[1]
机构:[1]East China Univ Sci & Technol, Sch Mech & Power Engn, Shanghai 200237, Peoples R China;[2]Shanghai Univ, Inst Sustainable Energy, Shanghai 200444, Peoples R China
年份:2018
卷号:165
期号:3
起止页码:D110
外文期刊名:JOURNAL OF THE ELECTROCHEMICAL SOCIETY
收录:;EI(收录号:20181204919935);WOS:【SCI-EXPANDED(收录号:WOS:000431790700060)】;
基金:This work was financially supported by National Natural Science Foundation of China (No. 51474107).
语种:英文
外文关键词:Molar ratio - Particle size - Ionic liquids - Lithium-ion batteries - Silicon - Electrodeposition - Anodes
摘要:One step electrodeposition is applied to prepare Si-Graphene (SiG) composites from Graphene(G)-SiCl4 -[BMP] tf(2)N ionic liquid. The SiG composites have shown an alternate layer-structure of Si and graphene caused by alternate processes of Si reduction and graphene adsorption on the electrode, which is confirmed by the regular current pulsation in the chronoamperometric curves during the whole electrodeposition process. The SEM and TEM morphologies indicate that each layer is about 120 nm thickness for the SiG3 composites electrodeposited from the 0.1852 mol.l(-1) Graphene(G)-SiCl4 -[BMP] tf(2)N ionic liquid, in which Si particle size is about 80-110 nm closely stick on 4-5 layers of graphene with a molar ratio of Si and C of 4.57: 1. SiG3 anode displays a specific capacity of 1378 mAh.g(-1) at the initial cycle, and 1083 mAh.g(-1) at the end of 400 cycle (retention of 78%) at 4 A.g(-1), as well as 988 mAh.g(-1) at 8A.g(-1), showing a good cycle life and rate performance. The layer-structured SiG anode significantly improve the conductivity and electrochemical performances of Si anode. The research provides a feasibility for electrodeposition preparation of layer-structured materials, especially for semiconductor-based alloys, graphene-based alloys in large-scale. (C) The Author(s) 2018. Published by ECS.
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