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Biological ion channel inspired interfacial protection layer for high-performance zinc-ion batteries

  • 03-09-2024
  • Original Article
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Abstract

The article discusses the development of a biological ion channel-inspired interfacial protection layer for zinc-ion batteries, addressing critical issues such as zinc dendrite growth, electrode surface corrosion, and hydrogen evolution reaction. The protective layer, designed using a metal–organic framework encapsulated with crown ethers, mimics the desolvation behavior of biological potassium ion channels. This innovative approach significantly improves the uniformity of zinc deposition, reduces energy barriers, and enhances the overall electrochemical performance of zinc-ion batteries. The study includes experimental characterizations and theoretical calculations that validate the effectiveness of the protective layer in suppressing side reactions and promoting stable cycling. The results highlight the potential of bionic interfacial engineering in optimizing energy storage systems.

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Title
Biological ion channel inspired interfacial protection layer for high-performance zinc-ion batteries
Authors
Kai-Xin Wang
Ru-Duan Yuan
Yu-Ting He
Sheng-Hao Reng
Qian-Zhi Gou
Si-Da Zhang
Jiang-Bin Deng
Zi-Ga Luogu
Zhao-Yu Chen
Xing-Xing Gu
Meng Li
Publication date
03-09-2024
Publisher
Nonferrous Metals Society of China
Published in
Rare Metals / Issue 2/2025
Print ISSN: 1001-0521
Electronic ISSN: 1867-7185
DOI
https://doi.org/10.1007/s12598-024-02966-5
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Image Credits
in-adhesives, MKVS, Ecoclean/© Ecoclean, Hellmich GmbH/© Hellmich GmbH, Krahn Ceramics/© Krahn Ceramics, Kisling AG/© Kisling AG, ECHTERHAGE HOLDING GMBH&CO.KG - VSE