阳极
电解质
电化学
枝晶(数学)
螯合作用
无机化学
锌
化学
水溶液
金属
溶剂化
化学工程
吸附
水溶液中的金属离子
材料科学
电池(电)
溶剂
电极
有机化学
功率(物理)
物理化学
工程类
物理
量子力学
数学
几何学
作者
Chenzhaosha Li,Qianzhi Gou,Rui Tang,Jiangbin Deng,Kaixin Wang,Haoran Luo,Junyi Cui,Yang Geng,Juanxiu Xiao,Yujie Zheng,Meng Li
标识
DOI:10.1021/acs.jpclett.3c02327
摘要
Aqueous zinc-ion batteries are considered promising energy storage devices due to their superior electrochemical performance. Nevertheless, the uncontrolled dendrites and parasitic side reactions adversely affect the stability and durability of the Zn anode. To cope with these issues, inspired by the chelation behavior between metal ions and amino acids in the biological system, glutamic acid and aspartic acid are selected as electrolyte additives to stabilize the Zn anode. Experimental characterizations in conjunction with theoretical calculation results indicate that these additives can simultaneously modify the solvation structure of hydrated Zn2+ and preferentially adsorb onto the Zn anode, thereby restricting the occurrence of interfacial side reactions and enhancing the performance of the Zn anode. Benefiting from these synergistic effects, the as-assembled Zn-based batteries containing additive electrolytes achieved admirable electrochemical performance. From the viewpoint of electrolyte regulation, this work provides a bright direction toward the development of aqueous batteries.
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