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May 6, 2026Energy & Environmental Science0 citations

Localized anion-rich solvation structure in low-concentration electrolytes enabled by non-coordinating chaotrope for deep-cycling zinc metal batteries

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LMLicheng MiaoShandong Agricultural UniversityGMGuoqiang MaHebei University of Science and TechnologyKQKaiyue QiuHebei University

Key Points

  • To improve the lifespan of aqueous zinc batteries during deep-cycling conditions using chaotropes.
  • Developed a non-coordinating chaotrope to enhance electrolyte performance.
  • Examined the anion-rich solvation structure in low-concentration electrolytes.
  • Analyzed battery performance under varied cycling conditions.
  • The inclusion of non-coordinating chaotrope improved battery lifespan significantly.
  • Achieved deeper cycling capabilities without causing irreversible damage to the battery.
  • Electrolyte modifications led to stable performance over extended cycles.

Abstract

Extending the lifespan of aqueous zinc (Zn) batteries (AZBs) under deep-cycling conditions is critical for their practical applications, but it remains a great challenge because of the irreversible issues of...

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Cite This Study

Miao et al. (2026) studied this question.

synapsesocial.com/papers/69fa986a04f884e66b5322a7https://doi.org/10.1039/d6ee00197a
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