IP Library Granted Patent US 9,679,703
Granted Patent B2
US 9,679,703 · App. 14/047,818 · Granted Jun 13, 2017

Carbon surface modification for three-volt ultracapacitor

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Quick Facts
Patent No.
US 9,679,703
App. No.
14/047,818
Granted
Jun 13, 2017
Kind
B2
Abstract

An electric double-layer ultracapacitor configured to maintain desired operation at an operating voltage of three volts, where the capacitor includes a housing component, a first and a second current collector, a positive and a negative electrode electrically coupled to one of the first and second current collectors, and a separator positioned between the positive and the negative electrode. At least one of the positive electrode and the negative electrode can include a treated carbon material, where the treated carbon material includes a reduction in a number of hydrogen-containing functional groups, nitrogen-containing functional groups and/or oxygen-containing functional groups.

Claims (40)

1. An ultracapacitor, comprising:

a first current collector and a second current collector;

a positive electrode electrically coupled to the first current collector;

a negative electrode electrically coupled to the second current collector, wherein at least one of the positive electrode and the negative electrode comprises a treated carbon material having about 10% to about 60% reduction in at least one functional group on a surface of the treated carbon material in comparison to an untreated carbon material;

a separator positioned between the positive electrode and the negative electrode;

an electrolyte in ionic contact with the positive electrode and the negative electrode; and

a housing component to retain the positive electrode, the negative electrode, the separator and the electrolyte, wherein the ultracapacitor is configured to operate at 3 volts or greater at 65° C. and maintain greater than 80% of its initial capacitance for over 1500 hours.

2. The ultracapacitor of claim 1 , wherein the at least one functional group is a hydrogen-containing functional group, a nitrogen-containing functional group, or an oxygen-containing functional group.

3. The ultracapacitor of claim 2 , wherein the treated carbon material comprises functional groups less than about 1% of which contains hydrogen.

4. The ultracapacitor of claim 2 , wherein the treated carbon material comprises functional groups less than about 0.5% of which contains nitrogen.

5. The ultracapacitor of claim 2 , wherein the treated carbon material comprises functional groups less than about 5% of which contains oxygen.

6. The ultracapacitor of claim 2 , wherein the treated carbon material comprises about 30% fewer hydrogen-containing functional groups than an untreated carbon material.

7. The ultracapacitor of claim 1 , wherein the ultracapacitor is configured to operate at 65° C. with a cycle life of greater than 500 k cycles.

8. An ultracapacitor, comprising:

a first current collector and a second current collector;

a positive electrode electrically coupled to the first current collector;

a negative electrode electrically coupled to the second current collector, wherein at least one of the positive electrode and the negative electrode comprises a treated carbon material having about 10% to about 60% reduction in at least one functional group on a surface of the treated carbon material in comparison to an untreated carbon material;

a separator positioned between the positive electrode and the negative electrode;

an electrolyte in ionic contact with the positive electrode and the negative electrode; and

a housing component to retain the positive electrode, the negative electrode, the separator and the electrolyte, wherein the ultracapacitor is configured to operate at 3 volts or greater at 65° C. and maintain less than 200% of its initial equivalent series resistance for over 1500 hours.

9. An ultracapacitor, comprising:

a first current collector and a second current collector;

a positive electrode electrically coupled to the first current collector;

a negative electrode electrically coupled to the second current collector,

wherein at least one of the positive electrode and the negative electrode comprises a treated carbon material having at least one functional group on a surface of the treated carbon material less than about 1% of which contains hydrogen, less than 0.5% of which contains nitrogen, or less than about 5% of which contains oxygen;

a separator positioned between the positive electrode and the negative electrode;

an electrolyte in ionic contact with the positive electrode and the negative electrode; and

a housing component to retain the positive electrode, the negative electrode, the separator and the electrolyte and wherein the ultracapacitor is capable of operating at 3 volts at a temperature of 65° C. or greater while maintaining less than 200% of its initial equivalent series resistance for over 1500 hours.

10. The ultracapacitor of claim 9 , wherein the ultracapacitor is capable of operating at 65° C. with a cycle life of greater than 500 k cycles.

11. The ultracapacitor of claim 1 , wherein the ultracapacitor is capable of operating at 3 volts at a temperature of 65° C. or greater while maintaining less than 200% of its initial equivalent series resistance for over 1500 hours.

12. The ultracapacitor of claim 1 , wherein the treated carbon material comprises functional groups less than about 1% of which contains hydrogen, less than 0.5% of which contains nitrogen, or less than about 5% of which contains oxygen.

13. The ultracapacitor of claim 8 , wherein the treated carbon material comprises functional groups less than about 1% of which contains hydrogen, less than 0.5% of which contains nitrogen, or less than about 5% of which contains oxygen.

14. The ultracapacitor of claim 8 , wherein the ultracapacitor is capable of operating at 65° C. with a cycle life of greater than 500 k cycles.

15. The ultracapacitor of claim 8 , wherein at least one of the positive electrode and the negative electrode comprises a treated carbon material having a number of functional groups on a surface of the treated carbon material less than about 1% of which contains hydrogen, less than 0.5% of which contains nitrogen, or less than about 5% of which contains oxygen.

16. The ultracapacitor of claim 1 , wherein the positive electrode comprises a first thickness and the negative electrode comprises a second thickness, wherein the first thickness of the positive electrode is greater than the second thickness of the negative electrode.

17. The ultracapacitor of claim 16 , wherein the first thickness is greater than the second thickness by 10%.

18. The ultracapacitor of claim 8 , wherein the positive electrode comprises a first thickness and the negative electrode comprises a second thickness, wherein the first thickness of the positive electrode is greater than the second thickness of the negative electrode.

19. The ultracapacitor of claim 18 , wherein the first thickness is greater than the second thickness by 10%.

20. The ultracapacitor of claim 9 , wherein the positive electrode comprises a first thickness and the negative electrode comprises a second thickness, wherein the first thickness of the positive electrode is greater than the second thickness of the negative electrode.

21. The ultracapacitor of claim 20 , wherein the first thickness is greater than the second thickness by 10%.

Assignments (10)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 20, 2026
From: UCAP POWER, INC.
To: MORPHEUS OPCO LLC
Reel/Frame 073521/0917 →
RELEASE OF SECURITY INTEREST Recorded Oct 31, 2025
From: BHAGATAVULA, ANAND
To: UCAP POWER, INC.
Reel/Frame 073428/0461 →
RELEASE OF SECURITY INTEREST Recorded Oct 28, 2025
From: BHAGATAVULA, ANAND
To: UCAP POWER, INC.
Reel/Frame 073369/0254 →
SECURITY INTEREST Recorded Aug 23, 2024
From: UCAP POWER, INC.
To: BHAGATAVULA, ANAND
Reel/Frame 068762/0463 →
SECURITY INTEREST Recorded Jun 14, 2024
From: UCAP POWER, INC.
To: ORRIS, JOHN
Reel/Frame 067736/0296 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 6, 2021
From: MAXWELL TECHNOLOGIES, INC.
To: UCAP POWER, INC.
Reel/Frame 057830/0647 →
RELEASE OF SECURITY INTEREST Recorded May 24, 2019
From: EAST WEST BANK
To: MAXWELL TECHNOLOGIES, INC.
Reel/Frame 051441/0005 →
RELEASE OF SECURITY INTEREST Recorded May 16, 2019
From: EAST WEST BANK
To: MAXWELL TECHNOLOGIES, INC.
Reel/Frame 049216/0304 →
SECURITY INTEREST Recorded Jul 6, 2015
From: MAXWELL TECHNOLOGIES, INC.
To: EAST WEST BANK
Reel/Frame 036064/0636 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 17, 2014
From: BENDALE, PRIYA; CRAWFORD, ROBERT; MITCHELL, PORTER; NELSON, JEFFREY; SCHAFER, DOUG; XI, XIAOMEI
To: MAXWELL TECHNOLOGIES, INC.
Reel/Frame 032457/0045 →