IP Library › Granted Patent US 11,437,645
Granted Patent B2
US 11,437,645 · App. 16/715,417 · Granted Sep 6, 2022

Electrolyte, battery, electronic apparatus, and methods for producing electrolyte and battery

Inventor: Hitoshi Yamamoto (Chino, JP)
Assignee: SEIKO EPSON CORPORATION
H01M10/0562H01M4/362H01M4/382H01M10/052H01M10/058H01M2300/008H01M2300/0077H01M2300/0091
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Quick Facts
Patent No.
US 11,437,645
App. No.
16/715,417
Granted
Sep 6, 2022
Kind
B2
Abstract

An electrolyte according to the present disclosure contains a lithium composite metal oxide represented by the following compositional formula. Li 7-x La 3 (Zr 2-x A x )O 12-y F y In the formula, 0.1≤x≤1.0, 0.0<y≤1.0, and A represents two or more types of Ta, Nb, and Sb.

Claims (44)

1. An electrolyte, comprising a lithium composite metal oxide selected from the group consisting of Li 6.3 La 3 Zr 1.3 Sb 0.5 Ta 0.2 O 11 F 1 , Li 6.2 La 3 Zr 1.2 Sb 0.4 Ta 0.4 O 11 F 1 , Li 5.95 La 3 Zr 0.95 Sb 0.4 Ta 0.4 Nb 0.25 O 11 F 1 , Li 6.35 La 3 Zr 1.35 Sb 0.4 Nb 0.25 O 11 F 1 , and Li 6.7 La 3 Zr 1.7 Ta 0.05 Nb 0.25 O 11 F 1 .

2. A battery, comprising:

a composite body including the electrolyte according to claim 1 and an active material;

an electrode provided at one face of the composite body; and

a current collector provided at another face opposite to the one face of the composite body.

3. The battery according to claim 2 , wherein the active material is a positive electrode active material containing Li and O.

4. The battery according to claim 2 , wherein the electrode is metallic Li.

5. An electronic apparatus, comprising the battery according to claim 2 .

6. A method for producing an electrolyte comprising:

preparing a first mixture by mixing a plurality of types of raw materials containing elements constituting a lithium composite metal oxide represented by the following compositional formula except that the first mixture does not contain a fluorine-containing compound;

forming a calcined body by subjecting the first mixture to a first heating treatment;

preparing a second mixture by mixing the calcined body with a fluorine-containing inorganic compound; and

forming a crystalline electrolyte by subjecting the second mixture to a second heating treatment:

Li 7-x La 3 (Zr 2-x A x )O 12-y F y

wherein 0.1≤x≤1.0, 0.0<y≤1.0, and A represents two or more types of Ta, Nb, and Sb, and

the lithium composite metal oxide has a total ion conductivity of 1.5×10 −4 S/cm or more.

7. The method according to claim 6 , wherein a heating temperature in the first heating treatment is 500° C. or higher and 650° C. or lower, and a heating temperature in the second heating treatment is 800° C. or higher and 1000° C. or lower.

8. A method for producing a battery comprising:

preparing a first mixture by mixing a plurality of types of raw materials containing elements constituting a lithium composite metal oxide represented by the following compositional formula except that the first mixture does not contain a fluorine-containing compound;

forming a calcined body by subjecting the first mixture to a first heating treatment;

preparing a second mixture by mixing the calcined body with a fluorine-containing inorganic compound;

forming a fired body by subjecting the second mixture to a second heating treatment;

preparing a slurry by grinding the fired body and thereafter mixing the ground fired body with a solvent;

forming a first molded body using an active material;

forming a composite body including the first molded body and an electrolyte portion containing a crystalline electrolyte by performing a third heating treatment in a state where the slurry and the first molded body are brought into contact with each other; and

forming a current collector for the composite body:

Li 7-x La 3 (Zr 2-x A x )O 12-y F y

wherein 0.1≤x≤1.0, 0.0<y≤1.0, and A represents two or more types of Ta, Nb, and Sb, and

the lithium composite metal oxide has a total ion conductivity of 1.5×10 −4 S/cm or more.

9. A method for producing a battery comprising:

preparing a first mixture by mixing a plurality of types of raw materials containing elements constituting a lithium composite metal oxide represented by the following compositional formula except that the first mixture does not contain a fluorine-containing compound;

forming a calcined body by subjecting the first mixture to a first heating treatment;

preparing a second mixture by mixing the calcined body with a fluorine-containing inorganic compound;

forming a fired body by subjecting the second mixture to a second heating treatment;

forming a powder by grinding the fired body;

preparing a mixed body by mixing the powder with an active material;

molding the mixed body;

forming a composite body including the active material and an electrolyte portion containing a crystalline electrolyte by subjecting the molded mixed body to a third heating treatment; and

forming a current collector for the composite body:

Li 7-x La 3 (Zr 2-x A x )O 12-y F y

wherein 0.1≤x≤1.0, 0.0<y≤1.0, and A represents two or more types of Ta, Nb, and Sb, and

the lithium composite metal oxide has a total ion conductivity of 1.5×10 −4 S/cm or more.

10. The method according to claim 9 , wherein in the preparing the mixed body, a slurry as the mixed body including the powder, the active material, and a solvent is prepared.

11. The electrolyte according to claim 1 , wherein the lithium composite metal oxide has a total ion conductivity of 2.8×10 −4 S/cm or more.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 31, 2019
From: YAMAMOTO, HITOSHI
To: SEIKO EPSON CORPORATION
Reel/Frame 051391/0012 →
Priority Claims (1)
JP JP2018-235177 · Dec 17, 2018 · national
Continuity (1)
Related Publication 20200194830A1 · Jun 18, 2020