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April 1, 2026The Chemical Record0 citations

Designing Tomorrow's Aqueous Batteries: A Holistic Blueprint for Performance and Scalability

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YBYavuz Selim BalcIoğluBTBurak Tekin

Key Points

  • The aim is to create a comprehensive blueprint for developing scalable and high-performance aqueous rechargeable batteries.
  • Conducted LLM meta-analysis of 2847 studies
  • Examined various aqueous battery chemistries including Li+, Na+, Zn2+, Al3+, and NH4+
  • Identified key structure-performance relationships affecting battery performance
  • Highlighted advances in electrolyte engineering and interfacial stabilization
  • Established critical design principles for durable and scalable aqueous batteries
  • Identified challenges related to electrochemical stability and degradation mechanisms
  • Provided practical guidance for materials development in the battery sector

Abstract

Aqueous batteries are attracting attention for large‐scale energy storage due to their intrinsic safety, low cost, and environmental compatibility. Nevertheless, their practical implementation remains constrained by challenges associated with narrow electrochemical stability windows, interfacial degradation, and electrolyte–electrode compatibility. This review employs LLM meta‐analysis of 2847 studies to provide a data‐driven, system‐level blueprint for designing safe, scalable, and high‐performance aqueous rechargeable batteries. By comparatively examining representative aqueous battery chemistries, including Li + ‐, Na + ‐, Zn 2+ ‐, Al 3+ ‐, and NH 4 + ‐based systems, key structure–performance relationships governing ion transport, cycling stability, and degradation mechanisms are identified. Recent advances in electrolyte engineering and interfacial stabilization strategies are highlighted, and critical design principles for durable and scalable aqueous batteries are summarized, offering practical guidance for future materials development and technology deployment.

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Cite This Study

BalcIoğlu et al. (2026) studied this question.

synapsesocial.com/papers/69cd7a1b5652765b073a7032https://doi.org/10.1002/tcr.70125
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