IP Library Granted Patent US 10,833,345
Granted Patent B2
US 10,833,345 · App. 15/723,071 · Granted Nov 10, 2020

Materials for high-performance aqueous organic redox flow batteries

Inventors: Sri Narayan (Arcadia, CA); Surya G. Prakash (Hacienda Heights, CA); Robert Aniszfeld (Los Angeles, CA); Bo Yang (Los Angeles, CA); Lena Hoober-Burkhardt (Los Angeles, CA); Sankarganesh Krishnamoorthy (Los Angeles, CA); Advaith Murali (Los Angeles, CA); Archith Nirmalchandar (Los Angeles, CA)
Assignee: UNIVERSITY OF SOUTHERN CALIFORNIA
H01M8/188H01M8/20H01M4/96H01M2008/1095H01M2250/10H01M2300/0014H01M2300/0082Y02E60/50
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 10,833,345
App. No.
15/723,071
Granted
Nov 10, 2020
Kind
B2
Abstract

Quinones and related compounds for use in flow batteries are provided. Many of these compounds are found to mitigate the effects of crossover in a flow battery. Other structure for improving battery performance is provided.

Claims (29)

1. A flow battery comprising:

a positive electrode;

a positive electrode electrolyte including water and a first redox couple, the positive electrode electrolyte flowing over and contacting the positive electrode, the first redox couple including an organic compound having formula I and a reduction product of the organic compound, the organic compound having formula I being reduced during discharge:

a negative electrode; and

a negative electrode electrolyte including water and a second redox couple, the negative electrode electrolyte flowing over and contacting the positive electrode, the second redox couple also includes the organic compound having formula I, the reduction product of the organic compound having formula I being oxidized during discharge:

wherein:

p is 0, 1, 2, 3, or 4;

o is 0, 1, 2, or 3;

r is 0, 1, 2, or 3;

R 1 and R 2 are each independently —SO 3 H, —SO 3 Na, —SO 3 K, —CO 2 H, —OH, —OCH 3 , C 1-10 alkyl, —(CH 2 CH 2 O) n OCH 3 , —NH 2 , N(CH 3 ) 2 , —I, —Cl, —Br, —F, —CF 3 , —CF 2 H, —NO 2 , —CCl 3 , —CN, —PO 3 H 2 , —PO 3 2− M + 2 , —COO − M + , —COOR, —CHO, —O − M + , —NHR, —N(R) 2 , —NHCOR, —OR, phenyl, —COR, C 6-10 aryl, pyridinyl, imidazoyl, or pyrroyl,

R 3 is —SO 3 H, —SO 3 Na, —SO 3 K, —CO 2 H, —OH, —OCH 3 , C 1-10 alkyl, —(CH 2 CH 2 O) n OCH 3 , —NH 2 , —N(CH 3 ) 2 , —I, —Cl, —Br, —F, —CF 3 , —CF 2 H, —NO 2 , —CCl 3 , —CN, —PO 3 H 2 , —PO 3 2− M + 2 , —COO − M + , —COOR, —CHO, —O − M + , —COR, C 6-10 aryl, pyridinyl, imidazoyl, or pyrroyl;

R is H or C 1-10 alkyl;

M + is Na + or K + ;

X is —(CH 2 ) n , —(CH 2 OCH 2 ) n , C 4-15 branched alkyl chains or other substituted alkyl chains; and

n is 1 to 10; and

wherein the first redox couple and the second redox couple include the same organic compound having formula I.

2. The flow battery of claim 1 wherein R 3 is —SO 3 H, —CF 3 , or —NO 2 .

3. The flow battery of claim 1 wherein R 3 is —SO 3 H, —SO 3 Na, —SO 3 K, —CO 2 H, —OH, —I, —Cl, —Br, —F, —CF 3 , —NO 2 , —CCl 3 , —CN, —PO 3 H 2 , —PO 3 2− M + 2 , —COOH, —COO − M + , —COOR, —CHO, —O − M + or —COR where R is H or C 1-10 alkyl and M + is Na + or K + .

4. The flow battery of claim 1 wherein R 1 and R 2 are each independently C 1-10 alkyl, —NH 2 , —O − M + , —NHR, —N(R) 2 , —NHCOR, —OR or phenyl.

5. The flow battery of claim 1 wherein R 1 R 2 , and R 3 are each independently —SO 3 H, —CO 2 H, —OH, —PO 3 H 2 , —PO 3 2− M+ 2 , —COOH, —COO − M + , —O − M + pyridinyl, imidazoyl, or pyrroyl.

6. The flow battery of claim 1 further comprising an ion exchange membrane interposed between the positive electrode and the negative electrode.

7. The flow battery of claim 6 wherein the ion exchange membrane has an equivalent weight greater between 1000 and 2000 with respect to sulfonic acid groups.

8. The flow battery of claim 1 wherein R 1 and R 2 are each independently —SO 3 H, —SO 3 Na, —SO 3 K, —CO 2 H, —OH, —OCH 3 , C 1-10 alkyl, —(CH 2 CH 2 O) n OCH 3 , —NH 2 , N(CH 3 ) 2 , —I, —Cl, —Br, —F, —CF 3 , —CF 2 H, —NO 2 , —CCl 3 , —CN, —PO 3 H 2 , —PO 3 2− M + 2 , —COO − M + , —COOR, —CHO, —O − M + , —NHCOR 2 , —OR, phenyl, or —COR.

9. The flow battery of claim 8 wherein R 3 is —SO 3 H, —SO 3 Na, —SO 3 K, —CO 2 H, —OH, —OCH 3 , C 1-10 alkyl, —(CH 2 CH 2 O) n OCH 3 , —NH 2 , —N(CH 3 ) 2 , —I, —Cl, —Br, —F, —CF 3 , —CF 2 H, —NO 2 , —CCl 3 , —CN, —PO 3 H 2 , —PO 3 2− M + 2 , —COO − M + , —COOR, —CHO, —O − M + , or —COR.

10. The flow battery of claim 1 wherein R 1 , R 2 and R 3 are each independently —SO 3 H, —SO 3 Na, —SO 3 K, —CO 2 H, —OH, —OCH 3 , C 1-10 alkyl, —(CH 2 CH 2 O) n OCH 3 , —NH 2 , N(CH 3 ) 2 , —I, —Cl, —Br, —F, —CF 3 , —CF 2 H, —NO 2 , —CCl 3 , —CN, —PO 3 H 2 , —PO 3 2− M + 2 , —COO − M + , —COOR, —CHO, —O − M + , —OR, phenyl, or —COR.

11. The flow battery of claim 1 wherein R 1 , R 2 and R 3 are each independently —SO 3 H, —SO 3 Na, —SO 3 K, —CO 2 H, —OH, —OCH 3 , C 1-10 alkyl, —(CH 2 CH 2 O) n OCH 3 , —CF 3 , —CF 2 H, —NO 2 , —CCl 3 , —CN, —PO 3 H 2 , —PO 3 2− M + 2 , —COO − M + , —COOR, —CHO, —O − M + , —OR, phenyl, or —COR.

12. The flow battery of claim 11 wherein R 3 is —SO 3 H, —CF 3 , or —NO 2 .

13. The flow battery of claim 12 further comprising an ion exchange membrane interposed between the positive electrode and the negative electrode.

14. The flow battery of claim 13 wherein the ion exchange membrane has an equivalent weight greater between 1000 and 2000 with respect to sulfonic acid groups.

Assignments (2)
CONFIRMATORY LICENSE Recorded Jul 16, 2019
From: UNIVERSITY OF SOUTHERN CALIFORNIA
To: U.S. DEPARTMENT OF ENERGY
Reel/Frame 049759/0177 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 3, 2018
From: NARAYAN, SRI; PRAKASH, SURYA G.; ANISZFELD, ROBERT; YANG, BO; HOOBER-BURKHARDT, LENA; KRISHNAMOORTHY, SANKARGANESH; MURALI, ADVAITH; NIRMALCHANDAR, ARCHITH
To: UNIVERSITY OF SOUTHERN CALIFORNIA
Reel/Frame 046257/0811 →
Continuity (2)
Provisional Application 62403004 · Sep 30, 2016
Related Publication 20180097249A1 · Apr 5, 2018