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February 26, 2026Energies0 citationsOpen Access

Enabling Rechargeability in Metal–Chlorine Batteries: The Critical Roles of Cathodes and Electrolytes

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SZShaoli ZhangGuizhou Electromechanical Research and Design InstituteDZDan ZhangGuizhou Electromechanical Research and Design InstituteXLXiangyang LiGuizhou Electromechanical Research and Design Institute

Key Points

  • The aim is to understand the roles of cathodes and electrolytes in enhancing metal–chlorine battery performance.
  • Overview of different metal–chlorine systems including Li-Cl2, Na-Cl2, and Ca-Cl2
  • Analysis of performance metrics like capacity, current density, and cycle life
  • Discussion of recent advancements in battery technology
  • Reversible capacity reaches up to 5000 mAh g−1
  • Current density achieved is as high as 16,000 mA g−1
  • Cycle life can extend up to 500 cycles
  • Batteries operate effectively at temperatures as low as −80 °C

Abstract

Metal–chlorine batteries, including Li-Cl2, Na-Cl2 and Ca-Cl2 systems, have emerged as promising energy storage technologies in recent years, delivering impressive performance in terms of reversible capacity (up to 5000 mAh g−1), current density (up to 16,000 mA g−1), cycle life (up to 500 cycles) and low-temperature operation (down to −80 °C). The critical roles of cathodes and electrolytes, enabling the birth and performance enhancement of metal–chlorine batteries, are highlighted and discussed here, providing an overview of current research progress on metal–chlorine batteries at the same time. Finally, we demonstrate a forward-looking view of where metal–chlorine batteries are headed.

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Cite This Study

Zhang et al. (2026) studied this question.

synapsesocial.com/papers/699fe3f995ddcd3a253e813chttps://doi.org/10.3390/en19051136
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