IP Library › Granted Patent US 8,520,365
Granted Patent B2
US 8,520,365 · App. 13/089,299 · Granted Aug 27, 2013

Charge storage device architecture for increasing energy and power density

Inventors: George Gruner (Los Angeles, CA); Ian O'Connor (Santa Monica, CA)
Assignee: Amperics Inc.
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Quick Facts
Patent No.
US 8,520,365
App. No.
13/089,299
Granted
Aug 27, 2013
Kind
B2
Abstract

The present invention relates generally to charge storage devices with at least one electrode having combined double layer supercapacitor, electrochemical supercapacitor and/or battery functionalities. In some embodiments, the electrode, may be composed of an ECS material, a highly-structured DLS material and a less-structured DLS material.

Claims (24)

1. A supercapacitor electrode, comprising:

an ECS material,

a highly-structured DLS material; and

a less-structured DLS material, wherein the less-structured DLS material forms an electrically conductive pathway between the ECS material and the highly-structured DLS material.

2. The supercapacitor electrode of claim 1 , wherein the ECS material is selected from a group comprising a polymer, oxide, metal oxide nanoparticle and metal oxide nanowire.

3. The supercapacitor electrode of claim 1 , wherein the highly-structured DLS material is selected from a group comprising nanowires, nanostructured carbon, graphene and carbon nanotubes.

4. The supercapacitor electrode of claim 1 , wherein the less-structured DLS material is selected from a group comprising activated carbon and carbon black.

5. A supercapacitor comprising the electrode claim 1 , wherein the supercapacitor is asymmetric or symmetric.

6. The supercapacitor of claim 5 , wherein the electrode and an operating voltage are engineered such that charge storage is achieved through a double layer at the electrode surface rather than ion insertion.

7. A supercapacitor electrode, comprising:

an ECS material,

a highly-structured DLS material; and

a less-structured DLS material, wherein the less-structured DLS material forms an electrically conductive pathway between the ECS material and the highly-structured DLS material, and

wherein the electrode and an operating voltage are engineered such that charge storage is achieved through a double layer at the electrode surface rather than ion insertion.

8. The supercapacitor electrode of claim 7 , wherein the ECS material comprises metal oxide nanoparticles.

9. The supercapacitor electrode of claim 8 , wherein the highly-structured DLS material is selected from a group comprising graphene and carbon nanotubes.

10. The supercapacitor electrode of claim 9 , wherein the less-structured DLS material is selected from a group comprising activated carbon and carbon black.

11. The supercapacitor electrode of claim 10 , wherein the supercapacitor is asymmetric.

12. The supercapacitor electrode of claim 10 , wherein the supercapacitor is symmetric.

13. The supercapacitor electrode of claim 7 , wherein the ECS material comprises a conducting polymer.

14. The supercapacitor electrode of claim 13 , wherein the highly-structured DLS material is selected from a group comprising graphene and carbon nanotubes.

15. The supercapacitor electrode of claim 14 , wherein the less-structured DLS material is selected from a group comprising activated carbon and carbon black.

16. The supercapacitor electrode of claim 15 , wherein the supercapacitor is asymmetric.

17. The supercapacitor electrode of claim 15 , wherein the supercapacitor is symmetric.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 4, 2014
From: GRUNER, GEORGE
To: THE REGENTS OF THE UNIVERSITY OF CALIFORNIA
Reel/Frame 033667/0189 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 4, 2014
From: O'CONNOR, IAN
To: THE REGENTS OF THE UNIVERSITY OF CALIFORNIA
Reel/Frame 033667/0233 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 30, 2013
From: O'CONNOR, IAN; GRUNER, GEORGE
To: AMPERICS INC.
Reel/Frame 030716/0169 →
Continuity (2)
Provisional Application 61325326 · Apr 18, 2010
Related Publication 20110255214A1 · Oct 20, 2011