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October 23, 2025Angewandte ChemieOpen Access

Ether‐Anchored MOFs Enable Stable Pseudosuspension Electrolytes for High‐Energy Lithium Metal Batteries

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Authors

HYHan YuYCYong ChenTZTonghui Zhang

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Overview

Experimental results demonstrate improved performance in quasi-solid-state and conventional lithium battery configurations, suggesting advantages for metal-organic frameworks.

Key Points

  • Capacity retention reached 92.40% after 1000 cycles for LiCoO2 ||Li configurations, indicating strong durability.
  • The metal-organic frameworks create a robust electrolyte that enhances interfacial chemistry for lithium metal batteries.
  • Through synergistic experiments, the study explores the benefits of quasi-solid-state configurations in future battery designs.
  • These findings highlight new pathways for improving the thermodynamic stability and efficiency of lithium battery systems.

Cite This Study

Yu et al. (2025) studied this question.

synapsesocial.com/papers/68fa32a40df2e6cd2f742314https://doi.org/10.1002/ange.202518384
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Also Consider

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  5. 5Harnessing Preferential Coordination of Ether in Electrolyte to Boost Oxidation Resistance for High‐Energy‐Density Lithium Metal Batteries2026