Achieving Stable Lithium Metal Anode at 50 mA cm−2 Current Density by LiCl Enriched SEI

Author:

Fan Yuxin1,Wu Tongwei1,He Miao1,Chen Wei1,Yan Chaoyi1,Li Fei1,Hu Anjun1,Li Yaoyao1,Wang Fan2,Jiao Yu3,Zhou Mingjie1,Wang Shuying12,Hu Yin12,Yan Yichao1,Lei Tianyu1,Wang Xianfu1,Xiong Jie1ORCID

Affiliation:

1. State Key Laboratory of Electronic Thin Film and Integrated Devices University of Electronic Science and Technology of China Chengdu 610054 China

2. School of Materials and Energy University of Electronic Science and Technology of China Chengdu 610054 China

3. College of Science Xichang University Xichang 615000 China

Abstract

AbstractLithium metal batteries are intensively studied due to the potential to bring up breakthroughs in high energy density devices. However, the inevitable growth of dendrites will cause the rapid failure of battery especially under high current density. Herein, the utilization of tetrachloroethylene (C2Cl4) is reported as the electrolyte additive to induce the formation of the LiCl‐rich solid electrolyte interphase (SEI). Because of the lower Li ion diffusion barrier of LiCl, such SEI layer can supply sufficient pathway for rapid Li ion transport, alleviate the concentration polarization at the interface and inhibit the growth of Li dendrites. Meanwhile, the C2Cl4 can be continuously replenished during the cycle to ensure the stability of the SEI layer. With the aid of C2Cl4‐based electrolyte, the Li metal electrodes can maintain stable for >300 h under high current density of 50 mA cm−2 with areal capacity of 5 mAh cm−2, broadening the compatibility of lithium metal anode toward practical application scenarios.

Funder

National Natural Science Foundation of China

China Postdoctoral Science Foundation

Natural Science Foundation of Sichuan Province

Publisher

Wiley

Subject

Biomaterials,Biotechnology,General Materials Science,General Chemistry

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