IP Library Granted Patent US 10,505,231
Granted Patent B2
US 10,505,231 · App. 16/005,797 · Granted Dec 10, 2019

Lithium ion secondary battery element and lithium ion secondary battery

Inventor: Takayuki Fujii (Zama, JP)
Assignee: ENVISION AESC JAPAN LTD.
H01M10/0585H01M2/26H01M2/34H01M4/13H01M4/36H01M10/04H01M10/052H01M10/056
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Quick Facts
Patent No.
US 10,505,231
App. No.
16/005,797
Granted
Dec 10, 2019
Kind
B2
Abstract

A lithium ion secondary battery element includes: a positive electrode that includes a positive electrode current collector including a positive electrode active material applied part where a positive electrode active material is applied to form a positive electrode active material layer, and including a positive electrode active material non-applied part where the positive electrode active material is not applied, the positive electrode active material layer including a positive electrode active material layer flat part and a positive electrode active material layer thin part that is thinner than the positive electrode active material layer flat part, and the positive electrode further including an insulating member that covers at least a part of the positive electrode active material layer thin part and at least a part of the positive electrode active material non-applied part; a separator; and a negative electrode that includes a negative electrode current collector including a negative electrode active material applied part where a negative electrode active material is applied to form a negative electrode active material layer, and including a negative electrode active material non-applied part where the negative electrode active material is not applied, wherein: the positive electrode, the separator, and the negative electrode are stacked in this order; and the positive electrode active material non-applied part and the negative electrode active material non-applied part face each other through the separator.

Claims (34)

1. A lithium ion secondary battery element comprising:

a positive electrode that includes a positive electrode current collector including a positive electrode active material applied part where a positive electrode active material is applied to form a positive electrode active material layer, and including a positive electrode active material non-applied part where the positive electrode active material is not applied,

the positive electrode active material layer including a positive electrode active material layer flat part and a positive electrode active material layer thin part that is thinner than the positive electrode active material layer flat part, and

the positive electrode further including an insulating member that covers at least a part of the positive electrode active material layer thin part and at least a part of the positive electrode active material non-applied part;

a separator; and

a negative electrode that includes a negative electrode current collector including a negative electrode active material applied part where a negative electrode active material is applied to form a negative electrode active material layer, and including a negative electrode active material non-applied part where the negative electrode active material is not applied, wherein:

the positive electrode, the separator, and the negative electrode are stacked in this order;

the positive electrode active material non-applied part and the negative electrode active material non-applied part face each other through the separator;

when a positive electrode charging capacity at an initial charging of a first part of the positive electrode active material layer thin part that is not covered with the insulating member is C E and a negative electrode charging capacity at the initial charging of a second part of the negative electrode that faces the first part through the separator is A E , a charging capacity ratio A E /C E is in a range of more than 1.10 to less than 1.34;

when a positive electrode charging capacity at the initial charging of the positive electrode active material layer flat part is C C and a negative electrode charging capacity at the initial charging of a third part of the negative electrode that faces the positive electrode active material layer flat part through the separator is A C , a charging capacity ratio A C /C C is in a range of more than 1.05 to less than 1.20; and

a value of the charging capacity ratio A E /C E is larger than a value of the charging capacity ratio A C /C C .

2. The lithium ion secondary battery element according to claim 1 , wherein

the positive electrode active material layer thin part is a part that becomes thinner toward a border part between the positive electrode active material applied part and the positive electrode active material non-applied part.

3. The lithium ion secondary battery element according to claim 1 , wherein:

the charging capacity ratio A E /C E is in a range of more than 1.15 to less than 1.34; and

the charging capacity ratio A C /C C is in a range of more than 1.05 to less than 1.10.

4. The lithium ion secondary battery element according to claim 1 , wherein:

the charging capacity ratio A E /C E is in a range of 1.17 or more to 1.32 or less; and

the charging capacity ratio A C /C C is in a range of 1.07 or more to 1.09 or less.

5. The lithium ion secondary battery element according to claim 1 , wherein

a border part between the negative electrode active material applied part and the negative electrode active material non-applied part is on the outside of the border part between the positive electrode active material applied part and the positive electrode active material non-applied part.

6. The lithium ion secondary battery element according to claim 1 , wherein

the negative electrode active material layer includes a negative electrode active material layer flat part and a negative electrode active material layer thin part that is thinner than the negative electrode active material layer flat part.

7. The lithium ion secondary battery element according to claim 6 , wherein

the negative electrode active material layer thin part is a part that becomes thinner toward the border part between the negative electrode active material applied part and the negative electrode active material non-applied part.

8. The lithium ion secondary battery element according to claim 6 , wherein

a start end of the negative electrode active material layer thin part corresponding to a border part between the negative electrode active material layer flat part and the negative electrode active material layer thin part faces, through the separator, a start end of the positive electrode active material layer thin part corresponding to a border part between the positive electrode active material layer flat part and the positive electrode active material layer thin part.

9. The lithium ion secondary battery element according to claim 6 , wherein

a start end of the negative electrode active material layer thin part corresponding to the border part between the negative electrode active material layer flat part and the negative electrode active material layer thin part faces, through the separator, the positive electrode active material layer thin part.

10. The lithium ion secondary battery element according to claim 1 , wherein

on an entire surface of the negative electrode active material layer, the negative electrode active material layer is thicker than the positive electrode active material layer that faces the negative electrode active material layer through the separator.

11. A lithium ion secondary battery comprising:

a power generating element including the lithium ion secondary battery element according to claim 1 , and an electrolyte solution; and

a package including therein the power generating element.

Assignments (2)
CHANGE OF NAME Recorded Jun 18, 2019
From: AUTOMOTIVE ENERGY SUPPLY CORPORATION
To: ENVISION AESC JAPAN LTD.
Reel/Frame 049499/0511 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 12, 2018
From: FUJII, TAKAYUKI
To: AUTOMOTIVE ENERGY SUPPLY CORPORATION
Reel/Frame 046052/0251 →
Priority Claims (1)
JP 2017-116533 · Jun 14, 2017 · national
Continuity (1)
Related Publication 20180366786A1 · Dec 20, 2018
Cited By (1)
US 12,719,135