电解质
阳极
锌
法拉第效率
材料科学
化学工程
无机化学
离子
碳纤维
基质(化学分析)
电偶阳极
锌化合物
作者
Zeyu Yan,Song Yang,Fusheng Luo,Jinlong Zhang,Xiude Liu,Junkai Zhu,Yi Zhang,Jun Huang,Yiwang Chen
摘要
ABSTRACT Gel electrolyte has emerged as a desirable candidate for high‐safety Zn ion batteries (ZIBs), but it is enormously restricted by the sluggish Zn 2+ ion transport and severe electric field distortion at the electrode/electrolyte interface, leading to Zn anode failure. Herein, a unique gel electrolyte with precise atomic‐level regulation of Zn 2+ migration is developed through incorporating Sn single‐atoms (SAs)‐loaded carbon fibers (CFs) into the polyacrylamide (PAM) matrix (PAM/CFs@Sn) for building stable Zn anodes. The CFs fillers are introduced into the PAM gel electrolyte, which can promote more uniform Zn 2+ flux and charge distribution, thereby alleviating electric‐field heterogeneity. Meanwhile, the atomic‐level zincophilic Sn SAs sites offer abundant and uniform active centers to lower the Zn 2+ migration energy barrier, thereby promoting regular and planar Zn deposition. These combined advantages of the PAM/CFs@Sn gel electrolyte enable Zn anodes to achieve stable cycling up to 3740 h at 0.5 mA cm −2 , a high Zn 2+ transference number of 0.89 and an average coulombic efficiency of 99.5% over 1480 h, etc. Overall, this work provides a reliable atomic‐level zinc chemistry regulating strategy of gel electrolytes toward durable Zn anodes and beyond.
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