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Challenges and approaches of single-crystal Ni-rich layered cathodes in lithium batteries

  • Jiangtao Hu
  • , Hongbin Wang
  • , Biwei Xiao
  • , Pei Liu
  • , Tao Huang
  • , Yongliang Li
  • , Xiangzhong Ren
  • , Qianling Zhang
  • , Jianhong Liu
  • , Xiaoping Ouyang
  • , Xueliang Sun
  • Shenzhen University
  • GRINM (Guangdong) Research Institute for Advanced Materials and Technology
  • XiangTan University
  • Western University
  • Eastern Institute of Technology, Ningbo

Research output: Contribution to journalReview articlepeer-review

98 Scopus citations

Abstract

High energy density and high safety are incompatible with each other in a lithium battery, which challenges today’s energy storage and power applications. Ni-rich layered transition metal oxides (NMCs) have been identified as the primary cathode candidate for powering next-generation electric vehicles and have been extensively studied in the last two decades, leading to the fast growth of their market share, including both polycrystalline and single-crystal NMC cathodes. Single-crystal NMCs appear to be superior to polycrystalline NMCs, especially at low Ni content (≤60%). However, Ni-rich single-crystal NMC cathodes experience even faster capacity decay than polycrystalline NMC cathodes, rendering them unsuitable for practical application. Accordingly, this work will systematically review the attenuation mechanism of single-crystal NMCs and generate fresh insights into valuable research pathways. This perspective will provide a direction for the development of Ni-rich single-crystal NMC cathodes.

Original languageEnglish
Article numbernwad252
JournalNational Science Review
Volume10
Issue number12
DOIs
StatePublished - 1 Dec 2023
Externally publishedYes

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