In Situ Constructed 3D Lithium Anodes for Long‐Cycling All‐Solid‐State Batteries

Author:

Duan Hui1,Wang Changhong1,Yu Ruizhi1,Li Weihan1,Fu Jiamin1,Yang Xiaofei1,Lin Xiaoting1,Zheng Matthew1,Li Xiaona1,Deng Sixu1,Hao Xiaoge1,Li Ruying1,Wang Jiantao2,Huang Huan3,Sun Xueliang1ORCID

Affiliation:

1. Department of Mechanical and Materials Engineering University of Western Ontario London Ontario N6A 5B9 Canada

2. China Automotive Battery Research Institute Co., Ltd Yanqi Economic Development Area No. 11 Xingke East Street, Huairou District Beijing 101407 China

3. Glabat Solid‐State Battery Inc. 700 Collip Circle London Ontario N6G 4X8 Canada

Abstract

AbstractConstructing a 3D lithium metal anode has been demonstrated to be the most effective strategy to address its dendrite issue in liquid batteries. However, this promising approach has proved challenging to inherit in all‐solid‐state Li metal batteries (ASSLMBs) because of the rigidity of inorganic solid electrolytes (SEs), which constrains interfacial solid–solid ionic contact. Herein, a 3D Li anode is in situ constructed for ASSLMBs by spontaneous chemical reactions between halide SEs and Li metal. The in situ formed Li–Al alloys and well‐maintained sulfide SEs inside the 3D structure serve as continuous electron and Li+ transport pathways and facilitate the homogenous distribution of charge carriers. The lithiophilic Li alloy can regulate Li deposition behavior and enable uniform Li nucleation and deposition. Both the Li||Li symmetric and full batteries exhibit good electrochemical performance at high current density. This work provides a universal strategy and new insight perspective to construct 3D Li for high‐performance ASSLMBs.

Funder

Natural Sciences and Engineering Research Council of Canada

Canada Foundation for Innovation

Publisher

Wiley

Subject

General Materials Science,Renewable Energy, Sustainability and the Environment

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