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- W3186030693 abstract "Abstract The thermal instability is a major problem in high‐energy nickel‐rich layered cathode materials for large‐scale battery application. Due to the scarce investigation of thick electrodes at the practical full‐cell level, the understanding of thermal failure mechanism is still insufficient. Herein, an intrinsic origin of thermal instability in fully charged industrial pouch cells during high‐temperature storage is discovered. Through the investigation from crystals to particles, and from electrodes to cells, it is shown that serious top‐down heterogeneous degradation occurs along the depth direction of the thick electrode, including phase transition, cationic disordering, intergranular/intragranular cracks, and side reactions. Such degradation originates from the abundant oxygen vacancies and reduced catalytic Ni 2+ at cathode surface, causing microstructural defects and directly leading to the thermal instability. Nonmagnetic elements doping and surface modification are suggested to be effective in mitigating the thermal instability through modulating cationic disordering." @default.
- W3186030693 created "2021-08-02" @default.
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- W3186030693 date "2021-07-19" @default.
- W3186030693 modified "2023-10-16" @default.
- W3186030693 title "Heterogeneous Degradation in Thick Nickel‐Rich Cathodes During High‐Temperature Storage and Mitigation of Thermal Instability by Regulating Cationic Disordering" @default.
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- W3186030693 doi "https://doi.org/10.1002/smll.202102055" @default.
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