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On the bramble way to Mg metal anodes in secondary Mg ion batteries.

Zou, Guodong; Feng, Jiawen; Zhao, Xue; Wang, Jinming; Wang, Yangyang; Yang, Weihao; Wei, Mengyao; Wang, Yimin; Li, Lanjie; Ren, Liqun; Fernandez, Carlos; Peng, Qiuming

Authors

Guodong Zou

Jiawen Feng

Xue Zhao

Jinming Wang

Yangyang Wang

Weihao Yang

Mengyao Wei

Yimin Wang

Lanjie Li

Liqun Ren

Qiuming Peng



Abstract

As a prospective alternative to lithium-ion batteries, rechargeable magnesium metal batteries (RMBs) have many unparalleled advantages, including direct use of Mg metal as the electrode; large nature abundance; intrinsically safe merits; high theoretical volumetric capacity. Nonetheless, there exist a large number of challenges on electrodes for their applications. Among them, surface passivation, uneven deposition/dissolution, and corrosion are critical issues that severely hinder the development of Mg anodes in RMBs. This review gives a specific, comprehensive, and in-depth summary of mechanisms relative to these problems. Subsequently, it displays the protection progresses of the Mg metal anode via three-dimensional host nanostructure fabrication, Mg alloys anode design, current collector modification, artificial solid-electrolyte interphase construction, and electrolyte optimization. Finally, future perspectives and outlooks in developing the other blossom of these strategies for rechargeable Mg batteries are also discussed. This overview provides significant guidance for designing and fabricating high-performance Mg metal anodes in secondary Mg batteries and boosting their commercial applications.

Citation

ZOU, G., FENG, J., ZHAO, X., WANG, J., WANG, Y., YANG, W., WEI, M., WANG, Y., LI, L., REN, L., FERNANDEZ, C. and PENG, Q. 2023. On the bramble way to Mg metal anodes in secondary Mg ion batteries. Journal of materials science and technology [online], 150, pages 175-189. Available from: https://doi.org/10.1016/j.jmst.2022.11.038

Journal Article Type Article
Acceptance Date Nov 22, 2022
Online Publication Date Feb 5, 2023
Publication Date Jul 1, 2023
Deposit Date Feb 6, 2023
Publicly Available Date Feb 6, 2024
Journal Journal of materials science and technology
Print ISSN 1005-0302
Publisher Elsevier
Peer Reviewed Peer Reviewed
Volume 150
Pages 175-189
DOI https://doi.org/10.1016/j.jmst.2022.11.038
Keywords Mg metal anode; Mg alloys; Deposition/dissolution; Dendrite; Artificial solid-electrolyte interphase; Mg ion battery
Public URL https://rgu-repository.worktribe.com/output/1879417

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