IP Library Granted Patent US 12700615
Granted Patent B2
US 12700615 · App. 18/461,545 · Granted Aug 4, 2026

Solid electrolyte and secondary battery including the same

Inventors: Hitoshi Onodera (Kariya-city, JP); Shuhei Yoshida (Kariya-city, JP); Yuta Shimonishi (Kariya-city, JP)
Assignee: DENSO CORPORATION
H01M10/0562H01M4/62H01M10/0585H01M50/431H01M50/443H01M50/449H01M2004/028H01M2300/0071H01M2300/008H01M2300/0094
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Quick Facts
Patent No.
US 12700615
App. No.
18/461,545
Granted
Aug 4, 2026
Kind
B2
Abstract

A solid electrolyte for a secondary battery includes a core phase having a particle shape and a shell phase covering at least a part of the core phase. The shell phase consists of one or more phases. A constituent material of the core phase includes a pyrochlore solid electrolyte represented by a composition formula of Aa 2−α Ab (1+α)/3 B 2 O 7−β X β , where Aa is an alkali metal, Ab is a lanthanoid, B is a cationic metal, and X is an anion that is substitutable with O. A constituent material of the shell phase includes a material having a chemical composition including Li and different from a chemical composition of the pyrochlore solid electrolyte, and having a melting point lower than a melting point of the pyrochlore solid electrolyte.

Claims (30)

1 . A solid electrolyte for a secondary battery, comprising:

a core phase having a particle shape; and

a shell phase covering at least a part of the core phase, wherein

the shell phase consists of one or more phases,

a constituent material of the core phase includes a pyrochlore solid electrolyte represented by a composition formula of Aa 2−α Ab (1+α)/3 B 2 O 7−β X β , where Aa is an alkali metal, Ab is a lanthanoid, B is a cationic metal, and X is an anion that is substitutable with O,

a constituent material of the shell phase includes a material having a chemical composition including Li and different from a chemical composition of the pyrochlore solid electrolyte, and having a melting point lower than a melting point of the pyrochlore solid electrolyte,

in the composition formula, α is in a range of 0.6<α<2.0, β is in a range of 0<β≤1, and a sum of valences of cations composed of Aa, Ab and B and anions composed of O and X is negative, and

the pyrochlore solid electrolyte has a defective structure.

2 . The solid electrolyte according to claim 1 , wherein

the constituent material of the shell phase includes LiF.

3 . The solid electrolyte according to claim 1 , wherein

the solid electrolyte is a sintered compact in which a plurality of particles including the core phase and the shell phase is sintered.

4 . A secondary battery comprising:

an electrolyte layer containing a solid electrolyte; and

a positive electrode and a negative electrode sandwiching the electrolyte layer therebetween, wherein

the solid electrolyte includes a core phase having a particle shape and a shell phase covering at least a part of the core phase,

the shell phase includes one or more phases,

a constituent material of the core phase includes a pyrochlore solid electrolyte represented by a composition formula of Aa 2−α Ab (1+α)/3 B 2 O 7−β X β , where Aa is an alkali metal, Ab is a lanthanoid, B is a cationic metal, and X is an anion that is substitutable with O,

a constituent material of the shell phase includes a material having a chemical composition including Li and different from a chemical composition of the pyrochlore solid electrolyte, and having a melting point lower than a melting point of the pyrochlore solid electrolyte,

in the composition formula, α is in a range of 0.6<α<2.0, β is in a range of 0<β≤1, and a sum of valences of cations composed of Aa, Ab and B and anions composed of O and X is negative, and

the pyrochlore solid electrolyte has a defective structure.

5 . The secondary battery according to claim 4 , wherein

the positive electrode includes a positive electrode active material, and

the positive electrode active material and the solid electrolyte are disposed to be in direct contact with each other.

6 . The secondary battery according to claim 4 , further comprising

a separator layer that separates the positive electrode and the negative electrode from each other, and

the solid electrolyte is applied to a surface of the separator layer.

7 . The secondary battery according to claim 4 , further comprising

a separator layer that separates the positive electrode and the negative electrode from each other, and

the solid electrolyte is applied to a surface of the positive electrode.