An All‐Solid‐State Li–Cu Battery via Cuprous/Lithium‐Ion Halide Solid Electrolyte

Y Yueyue Wang (National Power Battery Innovation Center) L Limin Wang X Xiaolong Yan (Department of Thoracic Surgery, Tangdu Hospital, Xi’an, China) Y Yang Xu X Xingyu Wang (Eastern Institute for Advanced Study, Ningbo Key Laboratory of All-Solid-State Battery, Zhejiang Key Laboratory of All-Solid-State Battery) X Xiangzhen Zhu (Eastern Institute for Advanced Study, Ningbo Key Laboratory of All-Solid-State Battery, Zhejiang Key Laboratory of All-Solid-State Battery) Y Yanlong Wu (National Power Battery Innovation Center) X Xu Han C Changtai Zhao (National Power Battery Innovation Center) C Congying Fang (College of New Energy and Electrical Engineering School of Materials Science and Engineering Hubei University Wuhan 430062 P.R. China) X Xiaokang Tan (College of New Energy and Electrical Engineering School of Materials Science and Engineering Hubei University Wuhan 430062 P.R. China) M Mengying Zhang Y Yinzhuang Fang (College of New Energy and Electrical Engineering School of Materials Science and Engineering Hubei University Wuhan 430062 P.R. China) Y Yingying Jiang B Biwei Xiao (GRINM (Guangdong) Institute for Advanced Materials and Technology) X Xiaona Li (Eastern Institute for Advanced Study, Ningbo Key Laboratory of All-Solid-State Battery, Zhejiang Key Laboratory of All-Solid-State Battery) J Jianwen Liang T Tao Mei

Abstract

Abstract The Cu cathode has great potential due to its low cost and high capacity. However, the limited ionic conductivity of the electrolyte for Cu ions and poor solubility of Cu species severely hinder the rapid development of Li–Cu batteries. Herein, we synthesized a Cu + halide solid electrolyte (Cu 2 ZrCl 6 , CZC) by mechanochemical method, which exhibited a high room‐temperature Cu + conductivity (about 14 mS cm −1 ) and high solubility of Cu species. The Cu||CZC||Cu symmetric battery demonstrated the ability to maintain stable Cu + plating/stripping over 1000 h at 0.1 mA cm −2 . We further constructed a model of the synergistic migration and ion exchange of Cu + and Li + in CZC and Li 2 ZrCl 6 electrolytes. Based on this, we assembled the first all‐solid‐state lithium–copper battery (ASSLCB), which delivered a high reversible specific capacity of 360 mAh g −1 (1.7–3.8 V versus Li⁺/Li, at 37 mA g −1 ) and exhibited outstanding cycling performance across 50 cycles at a current of 62.5 mA g −1 . Additionally, we designed a cathode‐free ASSLCB, utilizing aluminum foil as the current collector to demonstrate the deposition and dissolution of pure copper metal. This study provides a new design concept for Cu + conductors and lays a foundation for the future research of ASSLCBs.

Article Details

Volume / Issue Vol. 65, Issue 1
Published January 02, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (18)

Y

Yueyue Wang

National Power Battery Innovation Center

L

Limin Wang

X

Xiaolong Yan

Department of Thoracic Surgery, Tangdu Hospital, Xi’an, China

Y

Yang Xu

X

Xingyu Wang

Eastern Institute for Advanced Study, Ningbo Key Laboratory of All-Solid-State Battery, Zhejiang Key Laboratory of All-Solid-State Battery

X

Xiangzhen Zhu

Eastern Institute for Advanced Study, Ningbo Key Laboratory of All-Solid-State Battery, Zhejiang Key Laboratory of All-Solid-State Battery

Y

Yanlong Wu

National Power Battery Innovation Center

X

Xu Han

C

Changtai Zhao

National Power Battery Innovation Center

C

Congying Fang

College of New Energy and Electrical Engineering School of Materials Science and Engineering Hubei University Wuhan 430062 P.R. China

X

Xiaokang Tan

College of New Energy and Electrical Engineering School of Materials Science and Engineering Hubei University Wuhan 430062 P.R. China

M

Mengying Zhang

Y

Yinzhuang Fang

College of New Energy and Electrical Engineering School of Materials Science and Engineering Hubei University Wuhan 430062 P.R. China

Y

Yingying Jiang

B

Biwei Xiao

GRINM (Guangdong) Institute for Advanced Materials and Technology

X

Xiaona Li

Eastern Institute for Advanced Study, Ningbo Key Laboratory of All-Solid-State Battery, Zhejiang Key Laboratory of All-Solid-State Battery

J

Jianwen Liang

T

Tao Mei