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May 31, 20260 citationsOpen Access

Molecular Design of Ether-Based Electrolyte Solvents for High-Performance Lithium Batteries

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XLXu LiuXDXu DongTWTao Wang

Key Points

  • This review aims to summarize the advancements in the design of ether-based electrolytes for lithium batteries, addressing their performance and stability.
  • Summarized progress in molecular design of ether-based electrolytes for lithium batteries.
  • Discussed the evolution from conventional to emerging electrolyte concepts.
  • Highlighted data-driven approaches, including machine learning and deep learning, in electrolyte development.
  • Ether-based electrolytes enable stable cycling for lithium-ion and lithium-metal batteries.
  • Solvation manipulation significantly enhances electrochemical performance.
  • Challenges and future directions for molecular design of ether-based electrolytes were identified.

Abstract

Ether-based electrolytes, once dismissed for lithium-ion batteries due to poor anodic stability and incompatibility with graphite anodes, have reemerged as versatile candidates enabling stable cycling of next-generation lithium-ion and lithium-metal batteries, benefiting from the development of highly concentrated electrolytes, localized highly concentrated electrolytes, and weakly solvating electrolytes. In this Review, recent progress in the molecular design of ether-based electrolyte solvents for lithium batteries is summarized. The evolution from conventional electrolytes to the emerging electrolyte concepts is first outlined. The benefits of these electrolyte concepts on electrochemical performance are presented, emphasizing the crucial role of solvation manipulation. Then, the effect of ether molecular structures and functional groups on their solvation ability is systematically discussed. Furthermore, data-driven artificial intelligence approaches, including machine learning and deep learning, for ether-based electrolyte development are highlighted. Finally, challenges and future directions for the rational molecular design of ether-based electrolytes are proposed.

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Cite This Study

Liu et al. (2026) studied this question.

synapsesocial.com/papers/6a1bd0845783ba022b6fc478https://doi.org/10.5445/ir/1000192835
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