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    Incorporation of high-valence dopants in primary particles for strain-resistive Co-free high-Ni LiNi0.9Mn0.1O2 cathodes
    관리자
    2025-08-26      조회 47   댓글 0  
    Author Jiwoong Oh, Jaekwang Kim, Jong-Heon Lim, Kyu-Young Park, Songhun Yoon, Changshin Jo
    Journal Materials Today
    Year of Pub. 2025


    Incorporation of high-valence dopants in primary particles for strain-resistive Co-free high-Ni LiNi0. 9Mn0. 1O2 cathodes
    ​

    Co-free high-Ni cathode materials, which offer advantages such as high energy density and low cost, exhibit unsatisfactory cyclic life due to severe c-lattice distortion during cycling. In existing doping strategies, charge imbalance and ionic size differences with Ni3+ prevent the incorporation of high-valence dopants into primary particles during the calcination, thereby limiting their ability to suppress lattice strain. In this study, we employ a new doping strategy utilizing organic surfactants during the co-precipitation process to homogeneously position Zr4+ ions within the primary particles of LiNi0.9Mn0.1O2. Zr4+ ions located within the primary particles exerted a pillar effect, significantly enhancing the structural robustness of the material. During the first cycle, the c-lattice contraction is reduced, effectively inhibiting microcrack formation in the particles. As a result, it exhibits a significantly improved capacity retention of 98.6 % (189.2 mAh g− 1 ) after 100 cycles. 

    첨부파일 스크린샷_2025-08-26_112916.png (222.49KB) [0] 2025-08-26 11:30:30
    이전글 Gradient doping of phosphate in Ni-rich LiNi0. 6Co0. 2Mn0. 2O2 (NCM) and P0. 02-nrNCM: A Li-ion battery cathode with enhanced electrochemical performance at high cut-off voltage
    다음글 3D Integrated Process and Hybrid Bonding of High Bandwidth Memory (HBM)
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