In-Situ Synthesis of CuF2 Integrated Cathodes for High-Performance Lithium Metal Batteries with Superb Stability
Mingxin Shi, Xianggang Zhou, Yingqi Li, Xin Guan, Ruiqi Yao, Xingyou Lang, Yangguang Li, Qing Jiang, Yonghui WangAbstract
Copper fluoride (CuF2) exhibits high theoretical specific capacity and an attractive redox potential, making it a promising lithium metal batteries (LMBs) cathode material. Nevertheless, its cycling performance remains inadequate, with severe capacity loss occurring over the first few cycles and leading to poor reversibility. Herein, a CuF2/copper foam (CuF2/CF) integrated cathode is constructed by in situ synthesizing CuF2 on CF substrate using a facile hydrothermal method and further annealing process. The in situ fluorination of the conductive three-dimensional (3D) porous CF may effectively inhibit the further dissolution of CuF2 in the organic electrolyte and enhances the electron and ion transport capabilities. The optimized CuF2/CF integrated cathode delivers an excellent specific capacity of 762 mAh g–1 and exhibits excellent cycling performance. This work provides a feasible strategy to solve the solubility problem of CuF2 as a cathode material for LMBs.