发明公开
EP2712468A1 SULFIDE SOLID ELECTROLYTE MATERIAL, LITHIUM SOLID-STATE BATTERY, AND METHOD FOR PRODUCING SULFIDE SOLID ELECTROLYTE MATERIAL
有权
固体电解质材料,以硫化物,对于其方法和固体锂电池,包括THE SAME
- 专利标题: SULFIDE SOLID ELECTROLYTE MATERIAL, LITHIUM SOLID-STATE BATTERY, AND METHOD FOR PRODUCING SULFIDE SOLID ELECTROLYTE MATERIAL
- 专利标题(中): 固体电解质材料,以硫化物,对于其方法和固体锂电池,包括THE SAME
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申请号: EP12737596.2申请日: 2012-06-19
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公开(公告)号: EP2712468A1公开(公告)日: 2014-04-02
- 发明人: OHTOMO, Takamasa , KAWAMOTO, Koji , HAMA, Shigenori , KATO, Yuki
- 申请人: Toyota Jidosha Kabushiki Kaisha
- 申请人地址: 1 Toyota-cho Toyota-shi, Aichi-Ken 471-8571 JP
- 专利权人: Toyota Jidosha Kabushiki Kaisha
- 当前专利权人: Toyota Jidosha Kabushiki Kaisha
- 当前专利权人地址: 1 Toyota-cho Toyota-shi, Aichi-Ken 471-8571 JP
- 代理机构: Kuhnen & Wacker
- 优先权: JP2011150002 20110706
- 国际公布: WO2013005085 20130110
- 主分类号: H01M10/0562
- IPC分类号: H01M10/0562 ; H01M4/485 ; H01M10/052 ; H01M10/058 ; H01M10/0561
摘要:
A sulfide solid electrolyte material contains glass ceramics that contains Li, A, X, and S, and has peaks at 2θ = 20.2° and 23.6° in X-ray diffraction measurement with CuKα line. A is at least one kind of P, Si, Ge, Al, and B, and X is a halogen. A method for producing a sulfide solid electrolyte material includes amorphizing a raw material composition containing Li
2 S, a sulfide of A, and LiX to synthesize sulfide glass, and heating the sulfide glass at a heat treatment temperature equal to or more than a crystallization temperature thereof to synthesize glass ceramics having peaks at 2θ = 20.2° and 23.6° in X-ray diffraction measurement with CuKα line, in which a ratio of the LiX contained in the raw material composition and the heat treatment temperature are controlled to obtain the glass ceramics.
2 S, a sulfide of A, and LiX to synthesize sulfide glass, and heating the sulfide glass at a heat treatment temperature equal to or more than a crystallization temperature thereof to synthesize glass ceramics having peaks at 2θ = 20.2° and 23.6° in X-ray diffraction measurement with CuKα line, in which a ratio of the LiX contained in the raw material composition and the heat treatment temperature are controlled to obtain the glass ceramics.
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