中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Synthesis, Crystal Structure, and Electrochemical Properties of a Simple Magnesium Electrolyte for Magnesium/Sulfur Batteries

文献类型:期刊论文

作者Li, WF(李宛飞); Cheng, S(程双); Wang, J; Qiu, YC(丘勇才); Zheng, ZZ(郑召召); Lin, HZ(蔺洪振); Nanda, S; Ma, Q; Xu, Y; Ye, FM(叶方敏)
刊名ANGEWANDTE CHEMIE-INTERNATIONAL EDITION
出版日期2016
卷号55期号:22
通讯作者Zhang, YG(张跃钢)
英文摘要Most simple magnesium salts tend to passivate the Mg metal surface too quickly to function as electrolytes for Mg batteries. In the present work, an electroactive salt [Mg-(THF)(6)][AlCl4](2) was synthesized and structurally characterized. The Mg electrolyte based on this simple mononuclear salt showed a high Mg cycling efficiency, good anodic stability (2.5V vs. Mg), and high ionic conductivity (8.5 mScm(-1)). Magnesium/sulfur cells employing the as-prepared electrolyte exhibited good cycling performance over 20 cycles in the range of 0.3-2.6 V, thus indicating an electrochemically reversible conversion of S to MgS without severe passivation of the Mg metal electrode surface.
关键词[WOS]RECHARGEABLE MG BATTERIES ; LITHIUM-SULFUR BATTERIES ; LI-S BATTERIES ; PERFORMANCE ; GRAPHENE ; SEPARATOR ; SALTS
收录类别SCI ; EI
语种英语
WOS记录号WOS:000377921200006
源URL[http://ir.sinano.ac.cn/handle/332007/4800]  
专题苏州纳米技术与纳米仿生研究所_纳米研究国际实验室_张跃钢团队
推荐引用方式
GB/T 7714
Li, WF,Cheng, S,Wang, J,et al. Synthesis, Crystal Structure, and Electrochemical Properties of a Simple Magnesium Electrolyte for Magnesium/Sulfur Batteries[J]. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION,2016,55(22).
APA Li, WF.,Cheng, S.,Wang, J.,Qiu, YC.,Zheng, ZZ.,...&Zhang, YG.(2016).Synthesis, Crystal Structure, and Electrochemical Properties of a Simple Magnesium Electrolyte for Magnesium/Sulfur Batteries.ANGEWANDTE CHEMIE-INTERNATIONAL EDITION,55(22).
MLA Li, WF,et al."Synthesis, Crystal Structure, and Electrochemical Properties of a Simple Magnesium Electrolyte for Magnesium/Sulfur Batteries".ANGEWANDTE CHEMIE-INTERNATIONAL EDITION 55.22(2016).

入库方式: OAI收割

来源:苏州纳米技术与纳米仿生研究所

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