Nano-Micro Letters, Volume. 16, Issue 1, 210(2024)

Approaching Ultimate Synthesis Reaction Rate of Ni-Rich Layered Cathodes for Lithium-Ion Batteries

Zhedong Liu1... Jingchao Zhang1, Jiawei Luo1, Zhaoxin Guo1, Haoran Jiang1, Zekun Li1, Yuhang Liu1, Zijing Song1, Rui Liu2, Wei-Di Liu3, Wenbin Hu1,* and Yanan Chen1,** |Show fewer author(s)
Author Affiliations
  • 1School of Materials Science and Engineering, Tianjin University, Tianjin 300072, People’s Republic of China
  • 2School of Materials Science and Engineering, Shandong University of Science and Technology, Qingdao 266590, People’s Republic of China
  • 3Australian Institute of Bioengineering and Nanotechnology, The University of Queensland, St Lucia, QLD 4072, Australia
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    Nickel-rich layered oxide LiNixCoyMnzO2 (NCM, x + y + z = 1) is the most promising cathode material for high-energy lithium-ion batteries. However, conventional synthesis methods are limited by the slow heating rate, sluggish reaction dynamics, high energy consumption, and long reaction time. To overcome these challenges, we first employed a high-temperature shock (HTS) strategy for fast synthesis of the NCM, and the approaching ultimate reaction rate of solid phase transition is deeply investigated for the first time. In the HTS process, ultrafast average reaction rate of phase transition from Ni0.6Co0.2Mn0.2(OH)2 to Li- containing oxides is 66.7 (% s-1), that is, taking only 1.5 s. An ultrahigh heating rate leads to fast reaction kinetics, which induces the rapid phase transition of NCM cathodes. The HTS-synthesized nickel-rich layered oxides perform good cycling performances (94% for NCM523, 94% for NCM622, and 80% for NCM811 after 200 cycles at 4.3 V). These findings might also assist to pave the way for preparing effectively Ni-rich layered oxides for lithium-ion batteries.

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    Zhedong Liu, Jingchao Zhang, Jiawei Luo, Zhaoxin Guo, Haoran Jiang, Zekun Li, Yuhang Liu, Zijing Song, Rui Liu, Wei-Di Liu, Wenbin Hu, Yanan Chen. Approaching Ultimate Synthesis Reaction Rate of Ni-Rich Layered Cathodes for Lithium-Ion Batteries[J]. Nano-Micro Letters, 2024, 16(1): 210

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    Paper Information

    Category: Research Articles

    Received: Feb. 1, 2024

    Accepted: Apr. 30, 2024

    Published Online: Jan. 23, 2025

    The Author Email: Hu Wenbin (wbhu@tju.edu.cn), Chen Yanan (yananchen@tju.edu.cn)

    DOI:10.1007/s40820-024-01436-y

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