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    • 7. 发明申请
    • SUPERFICIAL FLUORINATION WITH ELEMENTAL FLUORINE OF LITHIUM METAL USED AS ANODE IN LITHIUM METAL BATTERIES
    • WO2022153169A1
    • 2022-07-21
    • PCT/IB2022/050172
    • 2022-01-11
    • POLITECNICO DI MILANO
    • SANSOTERA, MaurizioMAGAGNIN, LucaGIBERTINI, EugenioMARZIANI, PiergiorgioNAVARRINI, Walter
    • C01D15/04C23C8/08H01M4/134H01M4/1395H01M4/36H01M4/38H01M4/62H01M10/052
    • Surface fluorination process of lithium metal using elemental fluorine. Thereby, a uniform surface layer of LiF free of impurities is formed over the entire surface of the Li metal. This highly reproducible treatment can also be carried out on a large scale, making it possible to obtain a material which can be advantageously used as an anode in a lithium battery, since it ensures significantly higher performance than those obtained not only by using lithium metal as an anode, but also lithium metal anodes provided with a LiF layer, in which the formation of the LiF layer is formed in situ by organic or inorganic fluorine agents. Surface fluorination process of lithium metal using elemental fluorine. Thereby, a uniform surface layer of LiF free of impurities is formed over the entire surface of the Li metal. This highly reproducible treatment can also be carried out on a large scale, making it possible to obtain a material which can be advantageously used as an anode in a lithium battery, since it ensures significantly higher performance than those obtained not only by using lithium metal as an anode, but also lithium metal anodes provided with a LiF layer, in which the formation of the LiF layer is formed in situ by organic or inorganic fluorine agents. Surface fluorination process of lithium metal using elemental fluorine. Thereby, a uniform surface layer of LiF free of impurities is formed over the entire surface of the Li metal. This highly reproducible treatment can also be carried out on a large scale, making it possible to obtain a material which can be advantageously used as an anode in a lithium battery, since it ensures significantly higher performance than those obtained not only by using lithium metal as an anode, but also lithium metal anodes provided with a LiF layer, in which the formation of the LiF layer is formed in situ by organic or inorganic fluorine agents.