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March 6, 2026Journal of Materials Chemistry A0 citations

Asymmetric Coordination of Metal-Organic Frameworks with Enhanced Metal-Oxygen Hybridization for Li-O2 Batteries

BWBo WenJAJiaxuan AnZCZikang Chen

Key Points

  • The research aims to improve the efficiency and stability of lithium-oxygen batteries by enhancing metal-oxygen hybridization.
  • Developed freestanding metal-organic frameworks as cathodes.
  • Analyzed the kinetics of cathode reactions.
  • Assessed the impact on cycling stability and overvoltages.
  • Improved cycling stability observed with enhanced metal-oxygen hybridization.
  • Reduced overvoltages in tested lithium-oxygen batteries.
  • Demonstrated superior performance compared to traditional materials.

Abstract

Aprotic Li-O2 batteries have drawn considerable attention owning to their high theoretical energy density, but their sluggish cathode reaction kinetics leads to large overvoltages and poor cycling stability. Herein, freestanding...

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Cite This Study

Wen et al. (2026) studied this question.

synapsesocial.com/papers/69aa70a9531e4c4a9ff5a975https://doi.org/10.1039/d5ta09278g
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