Electrolyte design for aqueous Zn batteries
作者:Jiyun Heo, Dejian Dong, Zeyi Wang, Chen Fu, Chunsheng Wang · 发表于:Joule · 年份:2025 · DOI:10.1016/j.joule.2025.101844 · 被引用次数:140 · 研究领域:Advanced battery technologies research、Advanced Battery Materials and Technologies、Membrane-based Ion Separation Techniques
Context & scaleZn-based batteries with aqueous electrolytes are garnering great interest as the most promising next-generation batteries due to their intrinsic high safety, low cost, and environmental friendliness. However, the short cycle life of the Zn battery, originating from the low reversibility of the Zn metal electrode, is far from satisfactory. To achieve high reversibility of Zn metal electrode, tackling the water decomposition reaction and the inhomogeneous deposition/dissolution reaction is crucial. We present design principles for aqueous co-solvent electrolytes with high Zn reversibility and suggest a new parameter for accurately selecting beneficial organic molecules for Zn-based batteries. Electrolytes prepared using this principle effectively overcome the challenges in aqueous systems and demonstrate record-high cycling stability. This work provides new insight into aqueous electrolyte systems.Highlights•Thorough electrolyte design principles are suggested for aqueous batteries•An effective descriptor for selecting organic co-solvent is discovered•Designed electrolyte provides high reversibility and cycling stability of Zn batteriesSummaryPolarity scales are often used as descriptors for selecting organic molecules for aqueous Zn battery (AZB) electrolytes. However, failure to accurately predict the solvation of Zn2+ raises questions about their applicability for designing high-performance AZB electrolytes. Here, Dimroth and Richardt's Et(30) polarity scale i...