Cathode material and preparation method thereof, cathode plate and O3-type layered sodium ion battery

    公开(公告)号:US20240067534A1

    公开(公告)日:2024-02-29

    申请号:US18237367

    申请日:2023-08-23

    CPC classification number: C01G53/50 H01M10/054 C01P2004/03 C01P2006/40

    Abstract: The disclosure relates to the technical field of batteries, and discloses a cathode material and a preparation method thereof, a cathode plate and an O3-type layered sodium ion battery. The chemical formula of the cathode material is NaM1-x-y-zNixFeyMnzO2, wherein M comprises a first metal element, and the first metal element has at least one f electron orbital. Ni, Fe and Mn elements in the cathode material are elements containing a d electron orbital. By doping the element M, on the one hand, the f electron orbital and the d electron orbitals are mutually entangled, properties of the cathode material are synergistically improved, so that the structure and air stability of the material are improved; and on the other hand, interaction of all elements in the material can be facilitated, so that ions can move away from original positions to generate vacancies, ion diffusion channels of sodium ions are enlarged, and the rate capability of the material is improved. In addition, a redox reaction of oxygen atoms in anions in charging and discharging processes of the material can be excited, and thus the energy density and the power density of the material are improved.

    NASICON-TYPE FLUOROPHOSPHATE, CATHODE electrode plate AND sodium-ion BATTERY

    公开(公告)号:US20240150176A1

    公开(公告)日:2024-05-09

    申请号:US18386596

    申请日:2023-11-02

    CPC classification number: C01B25/455 H01M10/36

    Abstract: The present disclosure relates to the field of energy materials, and discloses a NASICON-type fluorophosphate with a molecular formula Na3MxV2NyP3-yO12Fz. M is at least one of Li, Na, K, Ni, Fe, Ca, Ti, Cr, Zn, Ag, Mo, Mg and Mn. N is at least one of B, Si, Ge and As. 0≤x≤4, 0≤y≤3, 0≤z≤1, and x=y+z. In embodiments, by introducing M and N, and ionic synergy of M, N and fluorine, the formed NASICON-type fluorophosphate material has greatly improved conductivity, which is conducive to improve coulombic efficiency and high-rate performance of sodium-ion batteries. The present disclosure further discloses a cathode electrode plate and a sodium-ion battery. The cathode electrode plate includes the NASICON-type fluorophosphate.

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