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Aqueous electrolyte additives for zinc-ion batteries

  • Zhuoxi Wu
  • , Zhaodong Huang
  • , Rong Zhang
  • , Yue Hou
  • , Chunyi Zhi*
  • *Corresponding author for this work

Research output: Contribution to journalReview articlepeer-review

Abstract

Because of their high safety, low cost, and high volumetric specific capacity, zinc-ion batteries (ZIBs) are considered promising next-generation energy storage devices, especially given their high potential for large-scale energy storage. Despite these advantages, many problems remain for ZIBs—such as Zn dendrite growth, hydrogen evolution, and Zn anode corrosion—which significantly reduce the coulomb efficiency and reversibility of the battery and limit its cycle lifespan, resulting in much uncertainty in terms of its practical applications. Numerous electrolyte additives have been proposed in recent years to solve the aforementioned problems. This review focuses on electrolyte additives and discusses the different substances employed as additives to overcome the problems by altering the Zn2+ solvation structure, creating a protective layer at the anode–electrolyte interface, and modulating the Zn2+ distribution to be even and Zn deposition to be uniform. On the basis of the review, the possible research strategies, future directions of electrolyte additive development, and the existing problems to be solved are also described.

Original languageEnglish
Article number062002
Number of pages25
JournalInternational Journal of Extreme Manufacturing
Volume6
Issue number6
Early online date1 Aug 2024
DOIs
Publication statusPublished - 1 Dec 2024
Externally publishedYes

Bibliographical note

Publisher Copyright:
© 2024 The Author(s). Published by IOP Publishing Ltd on behalf of the IMMT.

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 7 - Affordable and Clean Energy
    SDG 7 Affordable and Clean Energy

Keywords

  • zinc-ion battery
  • electrolyte additives
  • solvation structure
  • solid electrolyte interphase protection layer
  • Zn dendrites
  • H2 evolution

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