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Insights into the Enhanced Structural and Thermal Stabilities of Nb-Substituted Lithium-Rich Layered Oxide Cathodes

  • Chunxiao Zhang
  • , Bo Wei
  • , Wenjun Jiang
  • , Meiyu Wang*
  • , Wang Hu*
  • , Chaoping Liang
  • , Tianshuo Wang
  • , Libao Chen
  • , Ruifeng Zhang*
  • , Peng Wang
  • , Weifeng Wei*
  • *此作品的通讯作者
  • Central South University
  • Beihang University
  • Nanjing University

科研成果: 期刊稿件文章同行评审

摘要

Lithium-rich manganese-based layered oxides (LLOs) are considered to be the most promising cathode materials for next-generation lithium-ion batteries (LIBs) for their higher reversible capacity, higher operating voltage, and lower cost compared with those of other commercially available cathode materials. However, irreversible lattice oxygen release and associated severe structural degradation that exacerbate under high temperature and deep delithiation hinder the large-scale application of LLOs. Herein, we propose a strategy to stabilize the layered lattice framework and improve the thermal stability of cobalt-free Li1.2Mn0.53Ni0.27O2by doping with 4d transition metal niobium (Nb). Detailed atomic-scale imaging,in situcharacterization, and DFT simulations confirm that the induced strong Nb-O bonds stabilize the oxygen lattice framework and restrains the fracture of TM-O bonds, thereby inhibiting the release of lattice oxygen and the continuous migration of TM ions to the lithium layer during the cycle. Furthermore, Nb doping also promotes the surface rearrangement to form a Ni-enrichment layered/rocksalt heterogeneous interface to enhance surface structural stability. As a result, the Nb-doped material delivers a capacity of 181.7 mAh g-1with retention of 85.5% after 200 cycles at 1C, extraordinary thermal stability with a capacity retention of 80.7% after 200 cycles at 50 °C, and superior rate capability.

源语言英语
页(从-至)45619-45629
页数11
期刊ACS Applied Materials and Interfaces
13
38
DOI
出版状态已出版 - 29 9月 2021

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  1. 可持续发展目标 7 - 经济适用的清洁能源
    可持续发展目标 7 经济适用的清洁能源

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