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February 6, 2026Batteries2 citationsOpen Access

Advances in All-Solid-State Batteries Based on Chloride Solid Electrolytes

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LTLihao TangZCZijun CuiFXFei Xie

Key Points

  • The aim is to review chloride solid electrolytes and their potential in next-generation all-solid-state batteries.
  • Reviewed crystal structures and synthesis approaches of chloride solid electrolytes.
  • Analyzed ionic transport mechanisms and physicochemical stability.
  • Discussed integration challenges in practical all-solid-state batteries including performance and scalability.
  • Chloride solid electrolytes exhibit high ionic conductivity and electrochemical stability.
  • Identified critical factors for scalability and temperature performance in battery applications.
  • Outlined the potential for enhancing safety and performance in solid-state batteries.

Abstract

Driven by the imperative for enhanced battery safety, solid electrolytes have emerged as a leading strategy in next-generation energy storage technologies. Beyond conventional polymer, oxide, and sulfide systems, chloride-based inorganic solid electrolytes have recently garnered significant attention due to their unique combination of high ionic conductivity, favorable electrochemical stability, and processability. This work presents a comprehensive review of chloride solid electrolytes, examining their crystal structures, synthesis approaches, ionic transport mechanisms, and physicochemical stability under operational conditions. Furthermore, we discuss critical considerations for integrating these materials into practical all-solid-state batteries (ASSBs), including performance across wide temperature ranges, scalable cell fabrication methods, and cost-effectiveness. By bridging fundamental material properties with device-level engineering challenges, this review aims to provide a roadmap for future research and development, highlighting the substantial promise of chloride electrolytes in enabling safe, high-performance solid-state batteries.

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Cite This Study

Tang et al. (2026) studied this question.

synapsesocial.com/papers/698585aa8f7c464f230092c2https://doi.org/10.3390/batteries12020051
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