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锚定人工保护层以稳定可充电钾氧电池中的钾金属阳极。

Anchoring an Artificial Protective Layer To Stabilize Potassium Metal Anode in Rechargeable K-O Batteries.

作者信息

Xiao Neng, Zheng Jingfeng, Gourdin Gerald, Schkeryantz Luke, Wu Yiying

机构信息

Department of Chemistry and Biochemistry , The Ohio State University , 100 West 18th Avenue , Columbus , Ohio 43210 , United States.

出版信息

ACS Appl Mater Interfaces. 2019 May 8;11(18):16571-16577. doi: 10.1021/acsami.9b02116. Epub 2019 Apr 23.

Abstract

Rechargeable potassium batteries, including the potassium-oxygen (K-O) battery, are deemed as promising low-cost energy storage solutions. Nevertheless, the chemical stability of the K metal anode remains problematic and hinders their development. In the K-O battery, the electrolyte and dissolved oxygen tend to be reduced on the K metal anode, which consumes the active material continuously. Herein, an artificial protective layer is engineered on the K metal anode via a one-step method to mitigate side reactions induced by the solvent and reactive oxygen species. The chemical reaction between K and SbF leads to an inorganic composite layer that consists of KF, Sb, and KSb F on the surface. This in situ synthesized layer effectively prevents K anode corrosion while maintaining good K ionic conductivity in K-O batteries. Protection from O and moisture also ensures battery safety. Improved anode life span and cycling performance (>30 days) are further demonstrated. This work introduces a novel strategy to stabilize the K anode for rechargeable potassium metal batteries.

摘要

可充电钾电池,包括钾氧(K-O)电池,被认为是很有前景的低成本储能解决方案。然而,钾金属负极的化学稳定性仍然存在问题,阻碍了它们的发展。在K-O电池中,电解质和溶解的氧气倾向于在钾金属负极上被还原,这会持续消耗活性材料。在此,通过一步法在钾金属负极上设计了一层人工保护层,以减轻由溶剂和活性氧物种引起的副反应。钾与SbF之间的化学反应会在表面形成一层由KF、Sb和KSbF组成的无机复合层。这种原位合成的层有效地防止了钾负极的腐蚀,同时在K-O电池中保持了良好的钾离子导电性。对氧气和水分的防护也确保了电池的安全性。进一步证明了阳极寿命和循环性能(>30天)得到了改善。这项工作引入了一种新的策略来稳定可充电钾金属电池的钾负极。

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