IP Library Granted Patent US 10,522,863
Granted Patent B2
US 10,522,863 · App. 15/546,454 · Granted Dec 31, 2019

Electrolyte solution for redox flow battery containing organic active material and redox flow battery using the same

Inventors: Chang-soo Jin (Sejong, KR); Sun-hwa Yeon (Sejong, KR); Myung-seok Jeon (Daejeon, KR); Kyoung-hee Shiin (Daejeon, KR); Bum-suk Lee (Daejeon, KR); Se-Kook Park (Daejeon, KR); Cheon Beom Park (Daejeon, KR); Jaeyoung So (Jeollanam-do, KR)
Assignee: Korea Institute of Energy Research
H01M8/188H01M8/023H01M8/0221H01M8/0239H01M2300/0011Y02E60/528
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Quick Facts
Patent No.
US 10,522,863
App. No.
15/546,454
Granted
Dec 31, 2019
Kind
B2
Abstract

This invention relates to an electrolyte solution for a redox flow battery containing an organic active material, in which an organic compound useful as a single active material for a cathode and an anode is dissolved in a water-soluble solvent, and to a redox flow battery using the same. The electrolyte solution of the invention is an aqueous electrolyte solution obtained by dissolving an active material in an aqueous solvent, and is thus very stable due to the low risk of fire or explosion. Furthermore, the organic compound is applied as a single active material to the cathode and the anode, and thus, when the capacity of the battery is decreased due to the permeation of the active material through the separator, the battery capacity can be restored through rebalancing.

Claims (17)

1. An electrolyte solution for a redox flow battery, comprising:

a supporting electrolyte, an aqueous solvent, and an organic active material,

wherein the organic active material is an alkyl viologen dihalide.

2. The electrolyte solution of claim 1 , wherein the organic active material is used as a single active material for a cathode and an anode.

3. The electrolyte solution of claim 1 , wherein the alkyl viologen dihalide has an alkyl group selected from the group consisting of ethyl, methyl, propyl, butyl, heptyl, and diheptyl.

4. The electrolyte solution of claim 3 , wherein the alkyl viologen dihalide is ethyl viologen diiodide or ethyl viologen diperchlorate.

5. The electrolyte solution of claim 1 , wherein the alkyl viologen dihalide is alkyl viologen diiodide or alkyl viologen diperchlorate.

6. The electrolyte solution of claim 1 , wherein the organic active material is present in a concentration of 0.005 M to 0.3 M in the electrolyte solution.

7. The electrolyte solution of claim 1 , wherein the supporting electrolyte is selected from the group consisting of H 2 SO 4 , Li 2 SO 4 , Na 2 SO 4 , K 2 SO 4 and LiCl.

8. The electrolyte solution of claim 1 , wherein the supporting electrolyte is present in a concentration of 0.5 M to 3 M in the electrolyte solution.

9. A redox flow battery, comprising:

a cathode cell comprising a cathode and a cathode electrolyte solution;

an anode cell comprising an anode and an anode electrolyte solution; and

a separator disposed between the cathode cell and the anode cell,

wherein the cathode electrolyte solution and the anode electrolyte solution comprise a supporting electrolyte, an aqueous solvent and an organic active material, and

the organic active material is an alkyl viologen dihalide.

10. The redox flow battery of claim 9 , wherein the separator is an anion exchange membrane or a porous membrane.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 9, 2017
From: JIN, CHANG-SOO; YEON, SUN-HWA; JEON, MYUNG-SEOK; SHIIN, KYOUNG-HEE; LEE, BUM-SUK; PARK, SE-KOOK; PARK, CHEON BEOM; SO, JAEYOUNG
To: KOREA INSTITUTE OF ENERGY RESEARCH
Reel/Frame 044167/0044 →
Priority Claims (1)
KR 10-2016-0111270 · Aug 31, 2016 · national
Continuity (1)
Related Publication 20180277876A1 · Sep 27, 2018