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April 10, 2026Energy & Environmental Science5 citations

Competitive solvent occupation chemistry enabling robust four-electron conversion for anti-freezing aqueous zinc-iodine batteries

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WXWenyu XuZCZelin ChangHWHongwei Wang

Key Points

  • This research aims to address the challenges of polyiodide shuttling and iodine instability in zinc-iodine batteries, especially at low temperatures.
  • Investigated solvent occupation chemistry in aqueous zinc-iodine systems
  • Evaluated performance under low-temperature conditions
  • Analyzed conversion efficiency of iodides
  • Achieved robust four-electron conversion
  • Reduced polyiodide shuttling significantly
  • Improved battery stability and performance at low temperatures

Abstract

Aqueous zinc-iodine batteries hold immense promise for sustainable energy storage, yet suffer from polyiodide shuttling and high-valent iodine instability. Challenges undergo catastrophic amplification at low-temperatures due to incomplete conversion and...

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Cite This Study

Xu et al. (2026) studied this question.

synapsesocial.com/papers/69d895796c1944d70ce067e8https://doi.org/10.1039/d6ee00755d
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