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Manipulating Phase Stability and Kinetics in Prussian Blue Cathode via Entropy Engineering and d10Cation Incorporation for Potassium-Ion Batteries

  • Honglin Huang
  • , Shuangyan Qiao
  • , Benhui Lv
  • , Hua Kun Liu
  • , Shi Xue Dou
  • , Shaokun Chong
  • Northwestern Polytechnical University Xian
  • University of Shanghai for Science and Technology

科研成果: 期刊稿件文章同行评审

6 引用 (Scopus)

摘要

Phase transition and [Fe(CN)6]4–defects seriously limit electrochemical performance of Prussian blue analogue (PBA) cathodes for potassium-ion batteries (PIBs). Herein, entropy engineering and d10cation incorporation are utilized to construct a medium-entropy PBA, K1.23Fe0.42Mn0.45Sn0.13[Fe(CN)6]0.94·1.35H2O (KFMSHCF), as the cathode material for PIBs. Entropy-induced cation disorder markedly suppresses anion vacancies, while the entropy stabilization effect and Sn2+with a d10configuration stabilize local coordination environments. High configurational entropy boosts KFMSHCF to exhibit reduced band gap and low K-ion diffusion barrier, thereby ensuring excellent electrochemical kinetic. KFMSHCF undergoes a zero-strain solid-solution mechanism using Fe, Mn and Sn ions as redox centers for charge compensation. Therefore, KFMSHCF delivers a high initial energy density of 364.2 Wh·kg–1, remarkable cycling stability with a capacity retention of 82.1% after 100 cycles and long lifespan over 300 cycles, and significantly enhanced rate capability. The fabricated high-energy-density K-ion full batteries achieve ultralong lifespan over 2500 cycles with an ultralow capacity-decay-rate of 0.017% per cycle.

源语言英语
页(从-至)15062-15071
页数10
期刊Nano Letters
25
41
DOI
出版状态已出版 - 15 10月 2025

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