Hybrid working mechanism enables highly reversible Zn electrodes

被引:151
作者
Yuan, Libei [1 ,2 ]
Hao, Junnan [2 ]
Johannessen, Bernt [3 ]
Ye, Chao [2 ]
Yang, Fuhua [1 ]
Wu, Chao [1 ]
Dou, Shi-Xue [1 ]
Liu, Hua-Kun [1 ]
Qiao, Shi-Zhang [2 ]
机构
[1] Univ Wollongong, Inst Supercond & Elect Mat, Australian Inst Innovat Mat, Wollongong, NSW 2522, Australia
[2] Univ Adelaide, Sch Chem Engn & Adv Mat, Adelaide, SA 5005, Australia
[3] Australian Synchrotron, 800 Blackburn Rd, Clayton, Vic 3168, Australia
来源
ESCIENCE | 2023年 / 3卷 / 02期
基金
澳大利亚研究理事会;
关键词
Aqueous Zn-ion batteries; Hybrid working mechanism; Boron nitride; Nafion; ZINC; CHEMISTRY;
D O I
10.1016/j.esci.2023.100096
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
Zn dendrite growth and water-related side reactions have been criticized to hinder actual applications of aqueous Zn-ion batteries. To address these issues, a series of Zn interfacial modifications of building solid/electrolyte interphase (SEI) and nucleation layers have been widely proposed, however, their effectiveness remains debatable. Here, we report a boron nitride (BN)/Nafion layer on the Zn surface to efficiently solve Zn problems through combining the hybrid working mechanisms of SEI and nucleation layers. In our protective layer, Nafion exhibits the SEI mechanism by blocking water from the Zn surface and providing abundant channels for rapid Zn2+ transmission, whilst BN nanosheets induce Zn deposition underneath with a preferred (002) orientation. Accordingly, dendrite-free and side-reaction-free Zn electrode with (002) deposition under the protective layer is realized for the first time, as reflected by its high reversibility with average Coulombic efficiency of 99.2% for > 3000 h. The protected Zn electrode also shows excellent performance in full cells when coupling with polyaniline cathode under the strict condition of lean electrolyte addition. This work highlights insights for designing highly reversible metal electrodes towards practical applications.
引用
收藏
页数:10
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