Identifying surface degradation, mechanical failure, and thermal instability phenomena of high energy density Ni-rich NCM cathode materials for lithium-ion batteries: a review

被引:70
作者
Geldasa, Fikadu Takele [1 ]
Kebede, Mesfin Abayneh [2 ,4 ]
Shura, Megersa Wodajo [1 ]
Hone, Fekadu Gashaw [3 ]
机构
[1] Adama Sci & Technol Univ, Dept Appl Phys, POB 1888, Adama, Ethiopia
[2] Council Sci & Ind Res CSIR, Energy Ctr, Smart Pl, ZA-0001 Pretoria, South Africa
[3] Addis Ababa Univ, Dept Phys, POB 1176, Addis Ababa, Ethiopia
[4] Univ Witwatersrand, Sch Chem, Mol Sci Inst, ZA-2050 Johannesburg, South Africa
关键词
POSITIVE ELECTRODE MATERIALS; TRANSITION-METAL DISSOLUTION; LAYERED OXIDE CATHODES; LI-ION; ELECTROCHEMICAL PERFORMANCE; CYCLING STABILITY; STRUCTURAL EVOLUTION; OXYGEN RELEASE; LINI0.8CO0.1MN0.1O2; LINI0.6CO0.2MN0.2O2;
D O I
10.1039/d1ra08401a
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Among the existing commercial cathodes, Ni-rich NCM are the most promising candidates for next-generation LIBs because of their high energy density, relatively good rate capability, and reasonable cycling performance. However, the surface degradation, mechanical failure and thermal instability of these materials are the major causes of cell performance decay and rapid capacity fading. This is a huge challenge to commercializing these materials widely for use in LIBs. In particular, the thermal instability of Ni-rich NCM cathode active materials is the main issue of LIBs safety hazards. Hence, this review will recapitulate the current progress in this research direction by including widely recognized research outputs and recent findings. Moreover, with an extensive collection of detailed mechanisms on atomic, molecular and micrometer scales, this review work can complement the previous failure, degradation and thermal instability studies of Ni-rich NMC. Finally, this review will summarize recent research focus and recommend future research directions for nickel-rich NCM cathodes.
引用
收藏
页码:5891 / 5909
页数:19
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