IP Library Granted Patent US 9,716,290
Granted Patent B2
US 9,716,290 · App. 14/432,686 · Granted Jul 25, 2017

Nonaqueous electrolyte secondary battery and method for producing nonaqueous electrolyte secondary battery

Inventors: Katsushi Nishie (Kyoto, JP); Yudai Kawasoe (Kyoto, JP); Takeshi Hachida (Kyoto, JP)
Assignee: GS Yuasa International Ltd.
H01M10/0567H01M4/04H01M4/583H01M4/587H01M4/5825H01M10/058H01M10/0525H01M2220/30H01M2300/0025Y10T29/49108
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Quick Facts
Patent No.
US 9,716,290
App. No.
14/432,686
Granted
Jul 25, 2017
Kind
B2
Abstract

A nonaqueous electrolyte secondary battery including a positive electrode having a positive active material, and an electrolyte, wherein a positive electrode potential at the time of charging is 3.7 V or less with respect to a lithium metal potential, and the electrolyte contains a cyclic sulfate compound having a specific structure.

Claims (15)

1. A nonaqueous electrolyte secondary battery comprising a positive electrode having a positive active material, a negative electrode, and an electrolyte, wherein a positive electrode potential at the time of charging is 3.7 V or less with respect to a lithium metal potential, the negative electrode comprises amorphous carbon having a spacing of a (002) plane measured by a wide angle X-ray diffraction method of 3.45 angstroms or more, and the electrolyte contains a cyclic sulfate compound represented by the following general formula (1):

wherein R 1 and R 2 in the general formula (1) respectively represent groups represented by the formula (2) that are linked with each other, or either of R 1 and R 2 represents a hydrogen atom and the other represents a group represented by the general formula (3), the general formula (4) or the general formula (5); in the general formula (3), R 3 represents an alkyl group having 1 to 3 carbon atoms, which is optionally substituted with a halogen element, or a group represented by the general formula (5); portions of symbol*in the formula (2), the general formula (3), the general formula (4) and the general formula (5) represent a bonding position; and X 1 , X 2 , and X 3 in the general formula (1), the general formula (4) and the general formula (5) each independently represent a hydrogen atom or a halogen element.

2. The nonaqueous electrolyte secondary battery according to claim 1 , wherein the positive active material of the positive electrode contains lithium iron phosphate.

3. The nonaqueous electrolyte secondary battery according to claim 1 , wherein the amorphous carbon has an average particle size of 5 to 25 μm.

4. The nonaqueous electrolyte secondary battery according to claim 1 , wherein the electrolyte contains the cyclic sulfate compound represented by the general formula (1) in an amount of 0.1 to 2.0% by mass with respect to the total mass of the electrolyte.

5. The nonaqueous electrolyte secondary battery according to claim 1 , wherein the electrolyte contains, as the cyclic sulfate compound represented by the general formula (1), at least one cyclic sulfate compound selected from the group consisting of the following formula (6), formula (7), formula (8) and formula (9):

6. The nonaqueous electrolyte secondary battery according to claim 2 , wherein the amorphous carbon has an average particle size of 5 to 25 μm.

7. The nonaqueous electrolyte secondary battery according to claim 2 , wherein the electrolyte contains the cyclic sulfate compound represented by the general formula (1) in an amount of 0.1 to 2.0% by mass with respect to the total mass of the electrolyte.

8. The nonaqueous electrolyte secondary battery according to claim 2 , wherein the electrolyte contains, as the cyclic sulfate compound represented by the general formula (1), at least one cyclic sulfate compound selected from the group consisting of the following formula (6), formula (7), formula (8) and formula (9):

9. The nonaqueous electrolyte secondary battery according to claim 3 , wherein the electrolyte contains the cyclic sulfate compound represented by the general formula (1) in an amount of 0.1 to 2.0% by mass with respect to the total mass of the electrolyte.

10. The nonaqueous electrolyte secondary battery according to claim 3 , wherein the electrolyte contains, as the cyclic sulfate compound represented by the general formula (1), at least one cyclic sulfate compound selected from the group consisting of the following formula (6), formula (7), formula (8) and formula (9):

11. The nonaqueous electrolyte secondary battery according to claim 4 , wherein the electrolyte contains, as the cyclic sulfate compound represented by the general formula (1), at least one cyclic sulfate compound selected from the group consisting of the following formula (6), formula (7), formula (8) and formula (9):

12. A method for producing a nonaqueous electrolyte secondary battery comprising a positive electrode having a positive active material, a negative electrode, and an electrolyte, wherein a positive electrode potential at the time of charging is 3.7 V or less with respect to a lithium metal potential, the negative electrode comprises amorphous carbon having a spacing of a (002) plane measured by a wide angle X-ray diffraction method of 3.45 angstroms or more, and the electrolyte contains a cyclic sulfate compound represented by the general formula (1) in an amount of 0.1 to 2.0% by mass with respect to the total mass of the electrolyte

wherein R 1 and R 2 in the general formula (1) respectively represent groups represented by the formula (2) that are linked with each other, or either of R 1 and R 2 represents a hydrogen atom and the other represents a group represented by the general formula (3), the general formula (4) or the general formula (5); in the general formula (3), R 3 represents an alkyl group having 1 to 3 carbon atoms, which is optionally substituted with a halogen element, or a group represented by the general formula (5); portions of symbol * in the formula (2), the general formula (3), the general formula (4) and the general formula (5) represent a bonding position; and X 1 , X 2 , and X 3 in the general formula (1), the general formula (4) and the general formula (5) each independently represent a hydrogen atom or a halogen element,

the method comprising providing the positive electrode, the negative electrode, and the electrode in a battery case.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 31, 2015
From: NISHIE, KATSUSHI; KAWASOE, YUDAI; HACHIDA, TAKESHI
To: GS YUASA INTERNATIONAL LTD.
Reel/Frame 035303/0425 →
Priority Claims (1)
JP 2012-221418 · Oct 3, 2012 · national
Continuity (1)
Related Publication 20150270575A1 · Sep 24, 2015