IP Library Granted Patent US 10,658,700
Granted Patent B2
US 10,658,700 · App. 15/761,201 · Granted May 19, 2020

Additive for electrolyte solutions

Inventor: Kanako Yuyama (Chiba, JP)
Assignee: Nisshinbo Holdings Inc.
H01M10/0567H01G11/60H01G11/64H01M10/0525H01M10/0569H01M12/06H01M12/08H01G11/84H01M2300/0037Y02E60/128Y02E60/13
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Quick Facts
Patent No.
US 10,658,700
App. No.
15/761,201
Granted
May 19, 2020
Kind
B2
Abstract

The withstand voltage of an electrolyte solution is able to be increased by adding an additive for electrolyte solutions, which is composed of a compound that is configured from a silicon-containing sulfonate anion represented by formula (1) and a cation of, for example, a quaternary ammonium salt or a quaternary phosphonium salt, into the electrolyte solution. In the formula, each R independently represents an alkyl group having 1-8 carbon atoms; and n represents an integer of 2-6).

Claims (23)

1. An additive for electrolyte solutions, comprising a compound constituted by a silicon-containing sulfonate anion represented by formula (1) and a monovalent cation:

wherein Rs each independently represent an alkyl group having 1 to 8 carbon atoms, and n represents an integer of 2 to 6, and

wherein the monovalent cation is selected from the group consisting of an alkali metal ion, and an imidazolium ion.

2. The additive for electrolyte solutions according to claim 1 , wherein all the Rs are methyl groups.

3. The additive for electrolyte solutions according to claim 1 , wherein the alkali metal ion is a sodium ion.

4. The additive for electrolyte solutions according to claim 1 , wherein the imidazolium ion is represented by formula (3):

wherein R 3 and R 4 each independently represent an alkyl group having 1 to 8 carbon atoms.

5. An electrolyte solution comprising: an additive; an organic solvent; and an electrolyte salt,

wherein the additive comprises a compound constituted by a silicon-containing sulfonate anion represented by formula (1) and a monovalent cation:

wherein Rs each independently represent an alkyl group having 1 to 8 carbon atoms, and n represents an integer of 2 to 6, and

wherein the monovalent cation is selected from the group consisting of an alkali metal ion, an imidazolium ion, and a quaternary phosphonium ion.

6. The electrolyte solution according to claim 5 , wherein the organic solvent is a carbonates solvent.

7. The electrolyte solution according to claim 6 , wherein the carbonates solvent is a mixed solvent.

8. An electric storage device constituted by using the electrolyte solution according to claim 5 .

9. The electric storage device according to claim 8 , which is a secondary battery or an electric double layer capacitor.

10. An electric storage device constituted by using an additive for electrolyte solutions, the additive comprising:

a compound constituted by a silicon-containing sulfonate anion represented by formula (1) and a monovalent cation:

wherein Rs each independently represent an alkyl group having 1 to 8 carbon atoms, and n represents an integer of 2 to 6, and

wherein the monovalent cation is selected from the group consisting of an alkali metal ion, an imidazolium ion, and a quaternary phosphonium ion.

11. A method, comprising adding an additive to an electrolyte solution containing a solvent and an electrolyte salt to improve a withstand voltage of the electrolyte solution,

wherein the additive comprises a compound constituted by a silicon-containing sulfonate anion represented by formula (1) and a monovalent cation:

wherein Rs each independently represent an alkyl group having 1 to 8 carbon atoms, and n represents an integer of 2 to 6, and

wherein the monovalent cation is selected from the group consisting of an alkali metal ion, an imidazolium ion, and a quaternary phosphonium ion.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 19, 2018
From: YUYAMA, KANAKO
To: NISSHINBO HOLDINGS INC.
Reel/Frame 045275/0016 →
Priority Claims (1)
JP 2015-187773 · Sep 25, 2015 · national
Continuity (1)
Related Publication 20180269529A1 · Sep 20, 2018