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September 18, 2025Energy & Environmental Science20 citations

-60 to 50 °C Ultrawide-Temperature Flexible Zinc-Air Batteries Enabled by a Ternary Polar Hydrogel Electrolyte

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JWJun WangXCXifan ChenSJSong Jin

Key Points

  • Enhanced performance of flexible zinc-air batteries was achieved across a broad temperature range, improving compatibility with wearable electronics.
  • The introduction of a ternary polar hydrogel electrolyte significantly contributes to battery efficiency under extreme temperature conditions.
  • These advancements in flexible zinc-air batteries may support the development of next-generation energy solutions for portable devices.
  • The research emphasizes the potential impact of improved electrolyte designs on energy storage technologies suitable for varying environmental conditions.

Abstract

Flexible zinc-air batteries (FZABs) capable of operating across a broad temperature range are highly desirable for powering next-generation wearable electronics. However, FZABs still suffer from unsatisfied performance under extreme temperature,...

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Cite This Study

Wang et al. (2025) studied this question.

synapsesocial.com/papers/68d461c231b076d99fa61067https://doi.org/10.1039/d5ee03421c
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