材料科学
阳极
电解质
锌
盐(化学)
水溶液
溶剂
对偶(语法数字)
金属
电偶阳极
无机化学
冶金
电极
有机化学
阴极保护
化学
艺术
文学类
物理化学
作者
Kailin Guan,Wenshu Chen,Yunting Yang,Fei Ye,Hong Ye,Jian Zhang,Qinfen Gu,Yuping Wu,Linfeng Hu
标识
DOI:10.1002/adma.202405889
摘要
Abstract Rechargeable aqueous zinc batteries are promising in next‐generation sustainable energy storage. However, the low zinc (Zn) metal anode reversibility and utilization in aqueous electrolytes due to Zn corrosion and poor Zn 2+ deposition kinetics significantly hinder the development of Zn‐ion batteries. Here, a dual salt/dual solvent electrolyte composed of Zn(BF 4 ) 2 /Zn(Ac) 2 in water/TEGDME (tetraethylene glycol dimethyl ether) solvents to achieve reversible Zn anode at an ultrahigh depth of discharge (DOD) is developed. An “inner co‐salt and outer co‐solvent” synergistic effect in this unique dual salt/dual solvent system is revealed. Experimental results and theoretical calculations provide evidence that the ether co‐solvent inhibits water activity by forming hydrogen bonding with the water and coordination effects with the proton in the outer Zn 2+ solvation structure. Meanwhile, the anion of zinc acetate co‐salt enters the inner Zn 2+ solvation structure, thereby accelerating the desolvation kinetics. Strikingly, based on the electrolyte design, the zinc anode shows high reversibility at an ultrahigh utilization of 60% DOD with 99.80% Coulombic efficiency and 9.39 mAh cm −2 high capacity. The results far exceed the performance reported in electrolyte design work recently. The work provides fundamental insights into inner co‐salt and outer co‐solvent synergistic regulation in multifunctional electrolytes for reversible aqueous metal‐ion batteries.
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