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Anion Chemistry towards On-Site Construction of Solid-Electrolyte Interface for Highly Stable Metallic Zn Anode
Angewandte Chemie International Edition ( IF 16.1 ) Pub Date : 2024-09-08 , DOI: 10.1002/anie.202411056 Du Yuan 1 , Hong Yao 2 , Yuhang Li 2 , Zibo Chen 2 , Jianyu Chen 3 , Cheng-Feng Du 4 , Yingqian Chen 5 , Junze Chen 6 , Ming Wah Wong 5 , Jin Zhao 3
Angewandte Chemie International Edition ( IF 16.1 ) Pub Date : 2024-09-08 , DOI: 10.1002/anie.202411056 Du Yuan 1 , Hong Yao 2 , Yuhang Li 2 , Zibo Chen 2 , Jianyu Chen 3 , Cheng-Feng Du 4 , Yingqian Chen 5 , Junze Chen 6 , Ming Wah Wong 5 , Jin Zhao 3
Affiliation
To address the challenge of lacking effective SEI on Zn anode in aqueous Zn(OTf)2 electrolyte, a cathodic route was developed to achieve a uniform OTf−-involved artificial SEI on Zn anode, which brings the merits of promoting interfacial kinetics, depressing side reactions, and prolonging ZMB lifespan.
中文翻译:
阴离子化学在现场构建用于高度稳定的金属 Zn 负极的固体-电解质界面
为了解决 Zn(OTf)2 水电解质中 Zn 负极缺乏有效 SEI 的挑战,开发了一条阴极路线来实现均匀的 OTf− 参与的 Zn 负极人工 SEI,这带来了促进界面动力学、抑制副反应和延长 ZMB 寿命的优点。
更新日期:2024-09-08
中文翻译:
阴离子化学在现场构建用于高度稳定的金属 Zn 负极的固体-电解质界面
为了解决 Zn(OTf)2 水电解质中 Zn 负极缺乏有效 SEI 的挑战,开发了一条阴极路线来实现均匀的 OTf− 参与的 Zn 负极人工 SEI,这带来了促进界面动力学、抑制副反应和延长 ZMB 寿命的优点。