卤化物
金属
锌
无机化学
电解质
钙钛矿(结构)
水溶液
材料科学
金属卤化物
化学
电极
冶金
有机化学
物理化学
作者
Tong Yang,Jiahui Lu,Minh Tam Hoang,Yang Yang,Shijian Wang,Yong Chen,Yongyue Yu,Yan Wang,Timing Fang,Bing Sun,Guoxiu Wang,Hongxia Wang
标识
DOI:10.1002/advs.202509417
摘要
The performance of Zn metal batteries (ZMBs) is significantly hindered by the poor cycling stability and dendrite growth of Zn metal anodes. Herein, Cs2SnCl6 is introduced, a lead-free metal halide double perovskite, as a multifunctional electrolyte additive to address the challenges of Zn anodes. Utilizing a combination of molecular dynamics simulations, COMSOL simulations, and various characterization techniques, it is demonstrated that Cl-, Sn4+, and Cs+ ions generated from partial hydrolysis of Cs2SnCl6 in the 2 m ZnSO4 electrolyte can optimize the electrolyte solvation structures, suppress side reactions, facilitate Zn nucleation process, and modulate Zn deposition behavior. As a result, Zn||Zn symmetric cells with Cs2SnCl6-enhanced electrolyte achieve remarkable cycling stability over 5000 h at 1 mA cm-2, while the full cell also shows a capacity retention of 99.96% after 1000 cycles. This work provides insights into electrolyte-driven interface modulation strategies for next-generation aqueous ZMBs.
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