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September 23, 2025Interdisciplinary materialsOpen Access

In Situ‐Engineered MOF/Polymer Hybrid Electrolyte With 3D Continuous Ion Channels for High‐Voltage and Thermal‐Resistant Lithium Metal Batteries

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Authors

MWManxi WangLTLijuan TongSLShi‐Wen Lv

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Overview

This research demonstrates high ionic conductivity and mechanical strength in a polymer composite, indicating improved lithium ion transport in batteries.

Key Points

  • The MOF/polymer composite exhibits unprecedented ionic conductivity of 0.46 mS cm−1 at 25°C, enhancing lithium metal battery performance.
  • A high Li+ transference number of 0.74 and dendrite-free plating/stripping over 2000 hours showcases its stability during operation.
  • The study used a novel in situ growth strategy to form ordered ion-conducting networks, significantly improving interfacial stability.
  • Practical application was proven with stable cycling in high-voltage lithium batteries, highlighting its potential for safe, energy-efficient designs.

Cite This Study

Wang et al. (2025) studied this question.

synapsesocial.com/papers/68d473a631b076d99fa6bef0https://doi.org/10.1002/idm2.70005
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