电解质
材料科学
离子电导率
电导率
锌
聚乙烯醇
离解(化学)
化学工程
普鲁士蓝
自愈水凝胶
复合数
离子键合
盐(化学)
无机化学
离子
电化学
高分子化学
化学
电极
复合材料
冶金
有机化学
物理化学
工程类
作者
Qingqing Zheng,Liyang Liu,Zewei Hu,Zhenwei Tang,Haiying Lu,Yunqi Gao,Jiayao Wang,Yijian Song,Chao Han,Weijie Li
标识
DOI:10.1002/adfm.202504782
摘要
Abstract Hydrogel electrolytes are favored for flexible zinc‐ion batteries (FZIBs) due to their biocompatibility. Their application progress, however, is severely restricted by the poor water retention and low Zn 2+ transference number (t Zn 2+ ). Herein, one composite polymer electrolyte (CPE) is prepared by introducing Prussian blues (PBs) as multifunctional fillers in polyvinyl alcohol (PVA) matrix to enhance t Zn 2+ . Experimental and theoretical characterizations confirm that the PB filler can alter the Zn 2+ migration mechanism and trap water of CPE. PBs as active fillers can provide extra zinc ions and unique 3D ion diffusion channels. Moreover, the metal centers in PB framework that function as the Lewis acid sites have good affinity with anions in Zn salt, facilitating the dissociation of Zn salt. Additionally, the PB framework can absorb coordination water, enhancing the anti‐dehydration capability and the ionic conductivity of the hydrogel electrolytes. Consequently, P‐15/Zn‐15 hydrogel electrolyte shows high ionic conductivity of 16.3 mS cm⁻ 1 and t Zn 2+ of 0.63. The Zn||Zn symmetric cells with P‐15/Zn‐15 hydrogel electrolyte can stably operate for 1 600 h at 50 °C. The Zn||P‐15/Zn‐15|| NaV 3 O 8 ·1.5H 2 O full cell exhibits excellent cycling performance of 1 600 cycles.
科研通智能强力驱动
Strongly Powered by AbleSci AI