电解质
石墨
二价
离子半径
阳极
稀释
无机化学
化学
离子液体
扩散
溶剂化
离子键合
离子
分析化学(期刊)
材料科学
电极
物理化学
色谱法
热力学
冶金
物理
生物化学
有机化学
催化作用
作者
Na Li,Jia Wang,Qingwei Zhang,Xinhong Zhou,Hao Wang,Guoli Lu,Jingwen Zhao,Zheng Chen,Guanglei Cui
标识
DOI:10.1002/batt.202300058
摘要
Abstract Ionic liquid (IL) electrolytes have been widely used in high‐voltage Li‐based dual ion batteries (DIBs) due to their strong resistance against oxidation. However, their applications in Zn‐based DIBs are restricted because the high charge density of divalent Zn 2+ aggravates the ionic interactions in ionic networks and leads to insufficient Zn 2+ mobility. Herein, we introduce a hydrofluoroether diluent into a Zn‐based IL electrolyte to break down the larger ionic aggregates into smaller ones with weakened ionic interactions. This unique solvation structure reduces the Stokes radius of Zn 2+ from 1.3 nm to 0.97 nm and increases its diffusion coefficient by ∼30 times while retaining the high oxidation stability, enabling the charge/discharge cycling of Zn/graphite DIBs at a high rate of 20 C. Moreover, the enhanced mobility of Zn 2+ also promotes compact Zn deposition, which allows the operation of anode‐free Zn/graphite DIBs with 90 % capacity retention after 100 cycles.
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