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Capillary-confined sodium iron sulfate by porous carbon skeleton for reinforced sodiation kinetics and longevity

  • Zhuowen Liu
  • , Dan Su
  • , Mingwei Jiang
  • , Mingyao Wang
  • , Weijia He
  • , Xirui Wei
  • , Jiaping Zhang
  • , Rui Zhou
  • , Fei Xu
  • , Jian Gan Wang
  • Northwestern Polytechnical University Xian
  • Xi'an University of Science and Technology

科研成果: 期刊稿件文章同行评审

摘要

Alluaudite-type sodium iron sulfate (Na2+2xFe2−x(SO4)3, NFS) is known as a commercially promising cathode material of sodium-ion batteries due to its high working voltage and low-price production. However, the poor electrical conductance and structural instability of NFS significantly retard its scale-up practical pace. Herein, we propose a design strategy to reinforce the sodiation kinetics and longevity of NFS by capillary-confining with a porous tube-like carbon skeleton. The carbon functions as a fishing network for anchoring NFS particles, which remarkably promotes the electrical conductivity and mechanical stability of NFS. The unique capillary-confined composite establishes fast electron/ion transport highways for boosted reaction kinetics and a resilient architecture for electrode integrity. Impressively, the composite delivers an exceptional capacity of 105.2 mAh g−1 at 0.1 C and sustains excellent rate capability and cycling stability (96.1% capacity retention after 1000 cycles). The dynamic impedance evolution across the electrode is first systematically elucidated by in situ analyzing distribution of relaxation/capacitive times. This study affords an insightful electrochemical diagnostics for designing advanced NFS-based cathodes toward high-efficiency sodium-ion storage.

源语言英语
文章编号102341
期刊Materials Today Energy
60
DOI
出版状态已出版 - 8月 2026

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