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November 16, 2025Angewandte Chemie

Topological Structure Design of Ether Solvents for Lithium Storage Chemistry in Graphite Anode

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Authors

CCCheng-Yu ChenLCLing CheCSChao Shen

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Overview

Analysis shows enhanced lithium-ion battery performance through optimized electronegativity and solvent structure in graphite anodes, indicating a new pathway.

Key Points

  • Performance of lithium-ion batteries improves with optimized solvent properties in graphite anode systems, leading to effective stability.
  • Research indicates the role of electronegativity in determining solvent interactions, favoring efficiency in lithium-ion storage mechanisms.
  • Topological structure engineering of solvents highlights significant impacts on electrolyte performance and lithium migration in batteries.
  • Understanding solvent interactions informs future advancements in lithium-ion battery design, ensuring higher capacity and longevity.

Cite This Study

Chen et al. (2025) studied this question.

synapsesocial.com/papers/692509ffc0ce034ddc35333ahttps://doi.org/10.1002/ange.202514696
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  1. 1Topological Structure Design of Ether Solvents for Lithium Storage Chemistry in Graphite Anode2025 · 4 citations
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  3. 3(Invited) Design Criteria of Ether Electrolytes and Stable Interphase Toward Reversible Intercalation Chemistry of Graphite Anode in Li-Ion Batteries2024
  4. 4Molecular Design of Ether-Based Electrolyte Solvents for High-Performance Lithium Batteries2026
  5. 5A Fully Methylated Cyclic Ether Solvent Enables Graphite Anode Cycling at Low Temperatures2024 · 3 citations