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  • Efficient utilisation of ro...
    Zhu, Jie; Cao, Guolin; Li, Yunjiao; Xi, Xiaoming; Jin, Zhuomin; Xu, Bin; Li, Wei

    Scripta materialia, 03/2020, Letnik: 178
    Journal Article

    Generally, the synthesis of precursors for metal oxide anode and LiNiO2-based cathode materials undergoes different routes. Herein, NiO anode and LiNiO2 cathode material for lithium-ion batteries are synthesized by sharing the rod-like NiC2O4 precursor which is prepared by the solvothermal method. As a result, NiO and LiNiO2 exhibit special fibrous structure and promising electrchemical performances without any modification. Especially, the synthesis of fibrous LiNiO2 via a solvothermal route and its electrochemical properties are first reported. The excellent electrochemical performances of LiNiO2 can be attributed to the decent fiber architecture which enhances wettability by the electrolyte and shortens Li+ diffusion pathways. Display omitted