IP Library Granted Patent US 11,489,197
Granted Patent B2
US 11,489,197 · App. 16/820,648 · Granted Nov 1, 2022

Solid electrolyte composition, solid electrolyte-containing sheet, all-solid state secondary battery, and methods for manufacturing solid electrolyte-containing sheet and all-solid state secondary battery

Inventor: Masaomi Makino (Kanagawa, JP)
Assignee: FUJIFILM Corporation
H01M10/0562H01M4/382H01M10/058H01M10/0525H01M2004/027H01M2300/0068
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Quick Facts
Patent No.
US 11,489,197
App. No.
16/820,648
Granted
Nov 1, 2022
Kind
B2
Abstract

A solid electrolyte composition containing an inorganic solid electrolyte having conductivity of an ion of a metal belonging to Group I or II of the periodic table and an acid-modified cellulose nanofiber, a solid electrolyte-containing sheet and a manufacturing method therefor, and an all-solid state secondary battery having an inorganic solid electrolyte layer containing the inorganic solid electrolyte having conductivity of an ion of a metal belonging to Group I or II of the periodic table and an acid-modified cellulose nanofiber and a manufacturing method therefor.

Claims (82)

1. A solid electrolyte composition comprising:

an inorganic solid electrolyte (A) having conductivity of an ion of a metal belonging to Group I or II of the periodic table;

an acid-modified cellulose nanofiber (B); and

a binder (D).

2. The solid electrolyte composition according to claim 1 ,

wherein the acid-modified cellulose nanofiber (B) is an acid-modified substance of at least any of a carboxy group or a phosphoric acid group and a salt thereof.

3. The solid electrolyte composition according to claim 1 ,

wherein an acid value of the acid-modified cellulose nanofiber (B) is 0.1 to 2.5 mmol/g.

4. The solid electrolyte composition according to claim 1 ,

wherein the acid-modified cellulose nanofiber (B) have an average fiber diameter of 1 to 1,000 nm and an average fiber length of 10 to 100,000 nm.

5. The solid electrolyte composition according to claim 1 ,

wherein a mass ratio (A)/(B) of a content of the inorganic solid electrolyte (A) to a content of the acid-modified cellulose nanofiber (B) is 99.9/0.1 to 50/50.

6. The solid electrolyte composition according to claim 1 ,

wherein a water content is 50 ppm or less.

7. The solid electrolyte composition according to claim 1 ,

wherein the inorganic solid electrolyte (A) is a sulfide-based inorganic solid electrolyte.

8. The solid electrolyte composition according to claim 1 , further comprising:

a non-aqueous dispersion medium (C).

9. The solid electrolyte composition according to claim 1 ,

wherein the non-aqueous dispersion medium (C) is a hydrocarbon compound solvent, an ether compound solvent, a ketone compound solvent, an ester compound solvent, or a combination of two or more thereof.

10. The solid electrolyte composition according to claim 1 ,

wherein the binder (D) includes a polymer having a basic functional group.

11. The solid electrolyte composition according to claim 1 , further comprising:

an active material (E).

12. A solid electrolyte-containing sheet comprising:

an inorganic solid electrolyte (A) having conductivity of an ion of a metal belonging to Group I or II of the periodic table;

an acid-modified cellulose nanofiber (B); and

a binder (D).

13. A method for manufacturing a solid electrolyte-containing sheet comprising:

a step of forming a film of the solid electrolyte composition according to claim 1 .

14. A method for manufacturing an all-solid state secondary battery,

wherein the all-solid state secondary battery is manufactured through the manufacturing method according to claim 13 .

15. An all-solid state secondary battery comprising:

a positive electrode active material layer;

a negative electrode active material layer; and

an inorganic solid electrolyte layer between the positive electrode active material layer and the negative electrode active material layer,

wherein the inorganic solid electrolyte layer contains an inorganic solid electrolyte (A) having conductivity of an ion of a metal belonging to Group I or II of the periodic table, an acid-modified cellulose nanofiber (B) and a binder (D).

16. The all-solid state secondary battery according to claim 15 ,

wherein the inorganic solid electrolyte layer has a thickness of 1 to 30 μm.

17. The all-solid state secondary battery according to claim 15 ,

wherein the negative electrode active material layer is a layer of lithium metal.

18. A solid electrolyte composition comprising:

an inorganic solid electrolyte (A) having conductivity of an ion of a metal belonging to Group I or II of the periodic table;

an acid-modified cellulose nanofiber (B); and

a conductive auxiliary agent (F).

19. The solid electrolyte composition according to claim 18 ,

wherein the acid-modified cellulose nanofiber (B) is an acid-modified substance of at least any of a carboxy group or a phosphoric acid group and a salt thereof.

20. The solid electrolyte composition according to claim 18 ,

wherein an acid value of the acid-modified cellulose nanofiber (B) is 0.1 to 2.5 mol/g.

21. The solid electrolyte composition according to claim 18 ,

wherein the acid-modified cellulose nanofiber (B) have an average fiber diameter of 1 to 1,000 nm and an average fiber length of 10 to 100,000 nm.

22. The solid electrolyte composition according to claim 18 ,

wherein a mass ratio (A)/(B) of a content of the inorganic solid electrolyte (A) to a content of the acid-modified cellulose nanofiber (B) is 99.9/0.1 to 50/50.

23. The solid electrolyte composition according to claim 18 ,

wherein a water content is 50 ppm or less.

24. The solid electrolyte composition according to claim 18 ,

wherein the inorganic solid electrolyte (A) is a sulfide-based inorganic solid electrolyte.

25. The solid electrolyte composition according to claim 18 , further comprising:

a non-aqueous dispersion medium (C).

26. The solid electrolyte composition according to claim 18 ,

wherein the non-aqueous dispersion medium (C) is a hydrocarbon compound solvent, an ether compound solvent, a ketone compound solvent, an ester compound solvent, or a combination of two or more thereof.

27. The solid electrolyte composition according to claim 18 ,

wherein the binder (D) includes a polymer having a basic functional group.

28. The solid electrolyte composition according to claim 18 , further comprising:

an active material (E).

29. A method for manufacturing a solid electrolyte-containing sheet comprising:

a step of forming a film of the solid electrolyte composition according to claim 18 .

30. A method for manufacturing an all-solid state secondary battery,

wherein the all-solid state secondary battery is manufactured through the manufacturing method according to claim 29 .

31. A solid electrolyte-containing sheet comprising:

an inorganic solid electrolyte (A) having conductivity of an ion of a metal belonging to Group I or II of the periodic table;

an acid-modified cellulose nanofiber (B); and

a conductive auxiliary agent (F).

32. An all-solid state secondary battery comprising:

a positive electrode active material layer;

a negative electrode active material layer; and

an inorganic solid electrolyte layer between the positive electrode active material layer and the negative electrode active material layer,

wherein the inorganic solid electrolyte layer contains an inorganic solid electrolyte (A) having conductivity of an ion of a metal belonging to Group I or II of the periodic table, an acid-modified cellulose nanofiber (B) and a conductive auxiliary agent (F).

33. The all-solid state secondary battery according to claim 32 ,

wherein the inorganic solid electrolyte layer has a thickness of 1 to 30 μm.

34. The all-solid state secondary battery according to claim 32 ,

wherein the negative electrode active material layer is a layer of lithium metal.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 19, 2020
From: MAKINO, MASAOMI
To: FUJIFILM CORPORATION
Reel/Frame 052172/0808 →
Priority Claims (1)
JP JP2017-189047 · Sep 28, 2017 · national
Continuity (2)
Continuation PCTJP2018032178 · Aug 30, 2018
Related Publication 20200220210A1 · Jul 9, 2020