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    • 2. 发明授权
    • Lithium secondary battery
    • 锂二次电池
    • US06428935B1
    • 2002-08-06
    • US09600065
    • 2000-08-24
    • Kazunori TakadaShigeo KondoRyoji Kanno
    • Kazunori TakadaShigeo KondoRyoji Kanno
    • H01M458
    • H01M10/052H01M4/13H01M4/582H01M4/583H01M10/0562
    • In a lithium secondary battery comprising a chargeable and dischargeable positive electrode, a chargeable and dischargeable negative electrode and an electrolyte, wherein at least one of the positive electrode and the negative electrode comprises a lithium-containing halide having a spinel structure or spinel analogous structure, the lithium-containing halide having a spinel structure or spinel analogous structure having a high ion bonding property is dissolved into an electrolyte obtained by dissolving a salt into an organic solvent. In the secondary battery of the present invention, since a lithium ion conductive inorganic solid electrolyte is used as an electrolyte, there can be obtained a chargeable and dischargeable lithium battery in which at least one of a positive electrode and a negative electrode comprises a lithium-containing halide having a spinel structure or a spinel analogous structure.
    • 在包含可充电和可放电的正电极,可充电和可放电负极和电解质的锂二次电池中,其中正极和负极中的至少一个包括具有尖晶石结构或尖晶石类似结构的含锂卤化物, 将具有高离子键合性的尖晶石结构或尖晶石类似结构的含锂卤化物溶解在通过将盐溶解在有机溶剂中而获得的电解质中。 在本发明的二次电池中,由于使用锂离子传导性无机固体电解质作为电解质,所以可以获得可充放电的锂电池,其中正极和负极中的至少一个包括锂 - 含有尖晶石结构或尖晶石类似结构的卤化物。