水溶液
离子
阳极
锌
选择(遗传算法)
材料科学
无机化学
电偶阳极
化学
电极
冶金
阴极保护
计算机科学
物理化学
有机化学
人工智能
作者
Zhi Peng,Hui Yan,Qingqing Zhang,Shude Liu,Seong Chan Jun,S.K. Poznyak,Na Guo,Yuehua Li,Huajun Tian,Lei Dai,Ling Wang,Zhangxing He
出处
期刊:Nano Letters
[American Chemical Society]
日期:2024-07-22
卷期号:24 (30): 9137-9146
被引量:42
标识
DOI:10.1021/acs.nanolett.4c00693
摘要
Uncontrollable dendrite growth and corrosion induced by reactive water molecules and sulfate ions (SO42–) seriously hindered the practical application of aqueous zinc ion batteries (AZIBs). Here we construct artificial solid electrolyte interfaces (SEIs) realized by sodium and calcium bentonite with a layered structure anchored to anodes (NB@Zn and CB@Zn). This artificial SEI layer functioning as a protective coating to isolate activated water molecules, provides high-speed transport channels for Zn2+, and serves as an ionic sieve to repel negatively charged anions while attracting positively charged cations. The theoretical results show that the bentonite electrodes exhibit a higher binding energy for Zn2+. This demonstrates that the bentonite protective layer enhances the Zn-ion deposition kinetics. Consequently, the NB@Zn//MnO2 and CB@Zn//MnO2 full-battery capacities are 96.7 and 70.4 mAh g–1 at 2.0 A g–1 after 1000 cycles, respectively. This study aims to stabilize Zn anodes and improve the electrochemical performance of AZIBs by ion-selection sieving.
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