Origin and regulation of oxygen redox instability in high-voltage battery cathodes

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

110 Scopus Citations
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Author(s)

  • Xiang Liu
  • Gui-Liang Xu
  • Venkata Surya Chaitanya Kolluru
  • Chen Zhao
  • Qingtian Li
  • Xinwei Zhou
  • Yuzi Liu
  • Liang Yin
  • Zengqing Zhuo
  • Amine Daali
  • Jing-Jing Fan
  • Wenjun Liu
  • Wenqian Xu
  • Junjing Deng
  • Inhui Hwang
  • Dongsheng Ren
  • Xuning Feng
  • Chengjun Sun
  • Ling Huang
  • Tao Zhou
  • Ming Du
  • Zonghai Chen
  • Shi-Gang Sun
  • Maria K. Y. Chan
  • Wanli Yang
  • Minggao Ouyang
  • Khalil Amine

Detail(s)

Original languageEnglish
Pages (from-to)808-817
Journal / PublicationNature Energy
Volume7
Issue number9
Online published2 Jun 2022
Publication statusPublished - Sept 2022
Externally publishedYes

Abstract

Oxygen redox at high voltage has emerged as a transformative paradigm for high-energy battery cathodes such as layered transition-metal oxides by offering extra capacity beyond conventional transition-metal redox. However, these cathodes suffer from voltage hysteresis, voltage fade and capacity drop upon cycling. Single-crystalline cathodes have recently shown some improvements, but these challenges remain. Here we reveal the fundamental origin of oxygen redox instability to be from the domain boundaries that are present in single-crystalline cathode particles. By investigating single-crystalline cathodes with different domain boundaries structures, we show that the elimination of domain boundaries enhances the reversible lattice oxygen redox while inhibiting the irreversible oxygen release. This leads to significantly suppressed structural degradation and improved mechanical integrity during battery cycling and abuse heating. The robust oxygen redox enabled through domain boundary control provides practical opportunities towards high-energy, long-cycling, safe batteries.

Citation Format(s)

Origin and regulation of oxygen redox instability in high-voltage battery cathodes. / Liu, Xiang; Xu, Gui-Liang; Kolluru, Venkata Surya Chaitanya et al.
In: Nature Energy, Vol. 7, No. 9, 09.2022, p. 808-817.

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review