Ultrathin Zincophilic Interphase Regulated Electric Double Layer Enabling Highly Stable Aqueous Zinc-Ion Batteries

被引:0
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作者
Yimei Chen [1 ]
Zhiping Deng [1 ]
Yongxiang Sun [1 ]
Yue Li [1 ]
Hao Zhang [1 ]
Ge Li [2 ]
Hongbo Zeng [1 ]
Xiaolei Wang [1 ]
机构
[1] Department of Chemical and Materials Engineering, University of Alberta
[2] Department of Mechanical Engineering, University of Alberta
基金
加拿大自然科学与工程研究理事会;
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中图分类号
TM912 [蓄电池];
学科分类号
摘要
The practical application of aqueous zinc-ion batteries for large-grid scale systems is still hindered by uncontrolled zinc dendrite and side reactions. Regulating the electrical double layer via the electrode/electrolyte interface layer is an effective strategy to improve the stability of Zn anodes. Herein, we report an ultrathin zincophilic ZnS layer as a model regulator. At a given cycling current, the cell with Zn@ZnS electrode displays a lower potential drop over the Helmholtz layer(stern layer) and a suppressed diffuse layer, indicating the regulated charge distribution and decreased electric double layer repulsion force. Boosted zinc adsorption sites are also expected as proved by the enhanced electric double-layer capacitance. Consequently, the symmetric cell with the Zn S protection layer can stably cycle for around 3,000 h at 1 m A cm-2with a lower overpotential of 25 m V. When coupled with an I2/AC cathode, the cell demonstrates a high rate performance of 160 m Ah g-1at 0.1 A g-1and long cycling stability of over 10,000 cycles at 10 A g-1. The Zn||MnO2also sustains both high capacity and long cycling stability of 130 m Ah g-1 after 1,200 cycles at 0.5 A g-1.
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页码:291 / 305
页数:15
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