材料科学
电解质
氢氧化锌
阳极
锌
法拉第效率
电化学
氢氧化物
阴极
电偶阳极
腐蚀
电池(电)
电镀(地质)
无机化学
化学工程
冶金
电极
阴极保护
物理化学
工程类
化学
功率(物理)
物理
量子力学
地球物理学
地质学
作者
Nengze Wang,Xin Chen,Houzhao Wan,Bao Zhang,Kailin Guan,Jia Yao,Jie Ji,Jingying Li,Yi Gan,Lin Lv,Tao Li,Wei Ma,Hanbin Wang,Jun Zhang,Hao Wang
标识
DOI:10.1002/adfm.202300795
摘要
Abstract Zinc metal batteries show tremendous applications in wide‐scale storages still impeded by aqueous electrolytes corrosion and interfacial water splitting reaction. Herein, a zincophobic electrolyte containing succinonitrile (SN) additive is proposed, the SN electrolyte shows a lower affinity for zinc but a stronger affinity for solid‐state interphase (SEI). In the SN electrolyte, zinc hydroxide sulfate (ZHS) is more inclined to accumulate horizontally, forming a dense SEI protective layer on the surface of the Zn anode, effectively slowing down the corrosion of Zn and dendrite growth. The zincophobic SN electrolyte enables excellent performance: zinc plating/stripping Coulombic efficiency of 99.71% for an average of 400 cycles; stable cycles in a symmetric cell for 4000 h (0.9% zinc utilization) and 325 h (86.1% zinc utilization). The soft pack battery using limited zinc delivers maximum energy density of 57.0 Wh kg −1 (based on mass loading of cathode materials and anode materials). Such a simple additive strategy provides a theoretical reference for zinc chemistry in a mild electrolyte environment in practical applications.
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