IP Library › Granted Patent US 10,497,979
Granted Patent B2
US 10,497,979 · App. 15/513,499 · Granted Dec 3, 2019

Power storage device and electronic device

Inventors: Jun Ishikawa (Kanagawa, JP); Kazuhei Narita (Kanagawa, JP); Teppei Oguni (Kanagawa, JP); Aya Uchida (Kanagawa, JP)
Assignee: Semiconductor Energy Laboratory Co., Ltd.
H01M10/0569H01G11/06H01G11/26H01G11/60H01G11/62H01G11/64H01M2/14H01M4/134H01M4/366H01M4/662H01M4/663H01M10/058H01M10/0525H01M10/0567H01M4/133H01M4/136H01M4/5825H01M6/16H01M2004/027H01M2004/028H01M2300/0045Y02E60/13Y02T10/7011
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,497,979
App. No.
15/513,499
Granted
Dec 3, 2019
Kind
B2
Abstract

A power storage device with high capacity is provided. Alternatively, a power storage device with high energy density is provided. Alternatively, a highly reliable power storage device is provided. Alternatively, a long-life power storage device is provided. A power storage device is characterized by comprising a separator, a first electrode, a second electrode, an electrolytic solution, in which the separator is provided between the first electrode and the second electrode, the first electrode includes an active material layer and a current collector, the first electrode includes a pair of coating films between which the current collector is sandwiched, the active material layer includes a region in contact with the current collector, the active material layer includes a region in contact with at least one of the pair of coating films, and the electrolytic solution includes an alkali metal salt and an ionic liquid.

Claims (92)

1. A power storage device comprising:

a positive electrode;

a separator;

a negative electrode; and

an electrolytic solution,

wherein the separator is provided between the positive electrode and the negative electrode,

wherein the positive electrode includes a positive electrode active material layer and a positive electrode current collector,

wherein the negative electrode includes a negative electrode current collector, a first negative electrode active material layer facing the positive electrode active material layer with the separator sandwiched therebetween, a second negative electrode active material layer facing the first negative electrode active material layer with the negative electrode current collector sandwiched therebetween, a first coating film in contact with the first negative electrode active material layer, and a second coating film in contact with the second negative electrode active material layer,

wherein the first coating film is formed by reaction between the electrolytic solution and the first negative electrode active material layer, and

wherein the electrolytic solution includes an alkali metal salt and an ionic liquid.

2. The power storage device according to claim 1 ,

wherein the first coating film includes at least one of an element included in the first negative electrode active material layer and an element included in the electrolytic solution, and

wherein the second coating film includes at least one of an element included in the second negative electrode active material layer and an element included in the electrolytic solution.

3. The power storage device according to claim 1 ,

wherein the ionic liquid includes a cation containing a heteroaromatic ring.

4. The power storage device according to claim 1 ,

wherein the ionic liquid includes an imidazolium cation.

5. The power storage device according to claim 1 ,

wherein the ionic liquid includes a butylmethylimidazolium cation.

6. The power storage device according to claim 1 ,

wherein the power storage device operates within at least one of a temperature range of −25° C. to 10° C. and a temperature range of 40° C. to 100° C.

7. An electronic device comprising the power storage device according to claim 1 .

8. A power storage device comprising:

a positive electrode;

a separator;

a negative electrode; and

an electrolytic solution,

wherein the separator is provided between the positive electrode and the negative electrode,

wherein the positive electrode includes a positive electrode active material layer and a positive electrode current collector,

wherein the negative electrode includes a negative electrode current collector, a first negative electrode active material layer facing the positive electrode active material layer with the separator sandwiched therebetween, a second negative electrode active material layer facing the first negative electrode active material layer with the negative electrode current collector sandwiched therebetween, a first coating film in contact with the first negative electrode active material layer, and a second coating film in contact with the second negative electrode active material layer,

wherein the first coating film is formed by reaction between the electrolytic solution and the first negative electrode active material layer,

wherein the electrolytic solution includes an alkali metal salt and an ionic liquid, and

wherein the positive electrode overlaps with the negative electrode, and an end portion of the negative electrode is aligned with or located inward from an end portion of the positive electrode.

9. The power storage device according to claim 8 ,

wherein the first coating film includes at least one of an element included in the first negative electrode active material layer and an element included in the electrolytic solution, and

wherein the second coating film includes at least one of an element included in the second negative electrode active material layer and an element included in the electrolytic solution.

10. The power storage device according to claim 8 ,

wherein the ionic liquid includes a cation containing a heteroaromatic ring.

11. The power storage device according to claim 8 ,

wherein the ionic liquid includes an imidazolium cation.

12. The power storage device according to claim 8 ,

wherein the ionic liquid includes a butylmethylimidazolium cation.

13. The power storage device according to claim 8 ,

wherein the power storage device operates within at least one of a temperature range of −25° C. to 10° C. and a temperature range of 40° C. to 100° C.

14. An electronic device comprising the power storage device according to claim 8 .

15. A power storage device comprising:

a separator;

a first electrode;

a second electrode; and

an electrolytic solution,

wherein the separator is provided between the first electrode and the second electrode,

wherein the first electrode includes an active material layer and a current collector,

wherein the first electrode includes a pair of coating films between which the current collector is sandwiched,

wherein the active material layer includes a region in contact with the current collector,

wherein the active material layer includes a region in contact with at least one of the pair of coating films,

wherein each of the pair of coating films is formed by reaction between the electrolytic solution and the active material layer, and

wherein the electrolytic solution includes an alkali metal salt and an ionic liquid.

16. The power storage device according to claim 15 ,

wherein the pair of coating films includes at least one of an element included in the active material layer and an element included in the electrolytic solution.

17. The power storage device according to claim 15 ,

wherein the ionic liquid includes a cation containing a heteroaromatic ring.

18. The power storage device according to claim 15 ,

wherein the ionic liquid includes an imidazolium cation.

19. The power storage device according to claim 15 ,

wherein the ionic liquid includes a butylmethylimidazolium cation.

20. The power storage device according to claim 15 ,

wherein the power storage device operates within at least one of a temperature range of −25° C. to 10° C. and a temperature range of 40° C. to 100° C.

21. An electronic device comprising the power storage device according to claim 15 .

22. A power storage device comprising:

a separator;

a first electrode;

a second electrode; and

an electrolytic solution,

wherein the separator is provided between the first electrode and the second electrode,

wherein the first electrode includes an active material layer and a current collector,

wherein the first electrode includes a pair of coating films between which the current collector is sandwiched,

wherein the active material layer includes a region in contact with the current collector,

wherein the active material layer includes a region in contact with at least one of the pair of coating films,

wherein each of the pair of coating films is formed by reaction between the electrolytic solution and the active material layer,

wherein the electrolytic solution includes an alkali metal salt and an ionic liquid, and

wherein the second electrode overlaps with the first electrode, and an end portion of the first electrode is aligned with or located inward from an end portion of the second electrode.

23. The power storage device according to claim 22 ,

wherein the pair of coating films includes at least one of an element included in the active material layer and an element included in the electrolytic solution.

24. The power storage device according to claim 22 ,

wherein the ionic liquid includes a cation containing a heteroaromatic ring.

25. The power storage device according to claim 22 ,

wherein the ionic liquid includes an imidazolium cation.

26. The power storage device according to claim 22 ,

wherein the ionic liquid includes a butylmethylimidazolium cation.

27. The power storage device according to claim 22 ,

wherein the power storage device operates within at least one of a temperature range of −25° C. to 10° C. and a temperature range of 40° C. to 100° C.

28. An electronic device comprising the power storage device according to claim 22 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 23, 2017
From: ISHIKAWA, JUN; NARITA, KAZUHEI; OGUNI, TEPPEI; UCHIDA, AYA
To: SEMICONDUCTOR ENERGY LABORATORY CO., LTD
Reel/Frame 041697/0224 →
Priority Claims (3)
JP 2014-209116 · Oct 10, 2014 · national
JP 2014-224466 · Nov 4, 2014 · national
JP 2014-242776 · Dec 1, 2014 · national
Continuity (1)
Related Publication 20180233780A1 · Aug 16, 2018
Cited By (1)
US 12,658,478