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Unveiling Surface Reconstruction as the Primary Trigger for Capacity Loss in Ultra-High Nickel Cathodes

  • Lang Qiu
  • , Mengke Zhang
  • , Weibo Hua
  • , Yi Wang
  • , Yuting Deng
  • , Zhuangzhi Li
  • , Yang Song
  • , Zhenguo Wu
  • , Yao Xiao
  • , Xiaodong Guo
  • Sichuan University
  • Wenzhou University

科研成果: 期刊稿件文章同行评审

29 引用 (Scopus)

摘要

Mechanical failures, such as cracks and nanopores, along with the associated surface reconstruction, have long been regarded as the primary causes of capacity decay in ultra-high Ni layered oxides. However, the impact of these failures on performance degradation has not yet been effectively elucidate and distinguished. Herein, we develop ultra-high Ni cathodes with tailored morphological structures by incorporating B and Mo to optimize lithiation kinetics, which can suppress lattice strain, particle cracking, and surface reconstruction during charging/discharging. And the role of chemo-mechanical failures in capacity loss is systematically investigated. Surprisingly, contrary to the traditional view, structural and electrochemical characterizations of the cycled cathodes demonstrate that intragranular cracks, intergranular cracks, and nanopores are not the primary contributing factors of capacity loss. Instead, surface reconstruction triggers rapid capacity decay. Notably, compared to nanopores, intragranular cracks expose a significantly larger quantity of active substances, thereby promoting interfacial side reactions and accelerating surface structural reconstruction during cycling.

源语言英语
期刊论文编号e202417278
期刊Angewandte Chemie - International Edition
64
5
DOI
出版状态已出版 - 27 1月 2025

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