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April 10, 2026Energy & Environmental Science0 citations

Homogenizing Li+ transport in high-loading sulfur cathodes enabled by synergy of all-in-one thin electrode design and a multifunctional binder for practical Li-S batteries

HSHongjiang SongSZShengkui ZhongJLJie Liu

Key Points

  • The study aims to optimize lithium ion transport in high-loading sulfur cathodes to enhance the performance of lithium-sulfur batteries.
  • Developed a thin electrode design for high-loading sulfur cathodes.
  • Implemented a multifunctional binder to improve Li+ transfer kinetics.
  • Evaluated the impact of these designs on electrode performance.
  • Demonstrated significant improvement in lithium ion transfer in thicker electrodes.
  • Achieved higher areal capacity in lithium-sulfur batteries than traditional designs.

Abstract

Achieving high areal capacity is essential for high-energy-density Li–S batteries and requires using high-loading sulfur cathodes accompanied with increased coating thickness. However, poor Li+ transfer kinetics in thick electrodes and...

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Cite This Study

Song et al. (2026) studied this question.

synapsesocial.com/papers/69d894ec6c1944d70ce05d70https://doi.org/10.1039/d5ee07518a
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