锌
阳极
钝化
聚丙烯腈
图层(电子)
电化学
枝晶(数学)
电偶阳极
水溶液
材料科学
化学
化学工程
无机化学
纳米技术
冶金
复合材料
有机化学
工程类
阴极保护
电极
物理化学
几何学
数学
聚合物
作者
Yingxiao Du,Ruotong Li,Tingting Wang,Ziyi Feng,Dong Han,Fangfang Fan,D. Deng,Jing Zhu,Yongguang Liu,Lei Dai,Ling Wang,Zhangxing He
标识
DOI:10.1016/j.cej.2024.150139
摘要
Owing to their high specific capacity, low cost, environmental friendliness and safety, aqueous zinc ion batteries (AZIBs) have been one of the most popular battery systems. Nevertheless, dendrite growth, corrosion, hydrogen evolution and passivation on the anode side can seriously affect the lifetime of AZIBs. In view of this, this work constructs a protective layer compounded from inorganic (titanium silicate molecular sieve, TS) and organic (polyacrylonitrile, PAN) materials to realize the high-performance and dendrite-free zinc anode (Zn@PAN-TS). The cyano group in PAN has a coordination effect with zinc ions, which facilitates the transport of zinc ions. The porous TS can regulate the zinc ion flux through ion-confinement effect. Thus, the PAN-TS composite protective layer provides fast and orderly ion transport channels that modulate the uniform deposition of zinc through dual effect. Moreover, the experimental results show that the Zn@PAN-TS 50:1 anode has the best electrochemical performance. The corresponding MnO2 full cell maintained a high discharge capacity of 217.2 mAh·g−1 with a high retention rate of 81.1 % after 500 cycles at 0.3 A·g−1. This strategy offers fresh insight into constructing multifunctional hybrid interface for dendrite-free AZIBs.
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