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SOLID ELECTROLYTE, ALL-SOLID BATTERY, MANUFACTURING METHOD OF SOLID ELECTROLYTE, AND MANUFACTURING METHOD OF ALL-SOLID BATTERY
To provide a solid electrolyte exhibiting high ion conductivity and capable of being fired at a low temperature, an all-solid battery, a manufacturing method of the solid electrolyte, and a manufacturing method of the all-solid battery.SOLUTION: An oxide-type solid electrolyte contains Li, Ta, and P, the ratio of Li content to 1 mol of P is 0.5 mol or more and 0.95 mol or less, XRD measurement results confirm that the solid electrolyte has a crystal structure attributed to monoclinic.SELECTED DRAWING: Figure 1
【課題】 高いイオン伝導を発現するとともに低温焼成可能な固体電解質、全固体電池、固体電解質の製造方法および全固体電池の製造方法を提供する。【解決手段】 固体電解質は、LiとTaとPを含む酸化物型の固体電解質であって、1molのPに対するLi含有量の比率が0.5mol以上0.95mol以下であり、XRD測定の結果で、単斜晶に帰属する結晶構造を有することが確認されることを特徴とする。【選択図】 図1
SOLID ELECTROLYTE, ALL-SOLID BATTERY, MANUFACTURING METHOD OF SOLID ELECTROLYTE, AND MANUFACTURING METHOD OF ALL-SOLID BATTERY
To provide a solid electrolyte exhibiting high ion conductivity and capable of being fired at a low temperature, an all-solid battery, a manufacturing method of the solid electrolyte, and a manufacturing method of the all-solid battery.SOLUTION: An oxide-type solid electrolyte contains Li, Ta, and P, the ratio of Li content to 1 mol of P is 0.5 mol or more and 0.95 mol or less, XRD measurement results confirm that the solid electrolyte has a crystal structure attributed to monoclinic.SELECTED DRAWING: Figure 1
【課題】 高いイオン伝導を発現するとともに低温焼成可能な固体電解質、全固体電池、固体電解質の製造方法および全固体電池の製造方法を提供する。【解決手段】 固体電解質は、LiとTaとPを含む酸化物型の固体電解質であって、1molのPに対するLi含有量の比率が0.5mol以上0.95mol以下であり、XRD測定の結果で、単斜晶に帰属する結晶構造を有することが確認されることを特徴とする。【選択図】 図1
SOLID ELECTROLYTE, ALL-SOLID BATTERY, MANUFACTURING METHOD OF SOLID ELECTROLYTE, AND MANUFACTURING METHOD OF ALL-SOLID BATTERY
固体電解質、全固体電池、固体電解質の製造方法、および全固体電池の製造方法
ORIMO YOKO (author)
2022-10-07
Patent
Electronic Resource
Japanese
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