IP Library Granted Patent US 11,710,814
Granted Patent B2
US 11,710,814 · App. 17/671,736 · Granted Jul 25, 2023

Electrodes, electrochemical cells, and methods of forming electrodes and electrochemical cells

Inventors: Benjamin Yong Park (Mission Viejo, CA); Ian R. Browne (Orange, CA); Stephen W. Schank (Howell, MI); Steve Pierce (Pleasanton, CA)
Assignee: Enevate Corporation
H01M4/0435H01M4/0404H01M4/0471H01M4/134H01M4/1395H01M4/366H01M4/621H01M4/622H01M4/625H01M4/661H01M4/667H01M10/0525H01M2004/021Y02E60/10Y02P70/50Y10T156/10
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Quick Facts
Patent No.
US 11,710,814
App. No.
17/671,736
Granted
Jul 25, 2023
Kind
B2
Abstract

Electrodes and methods of forming electrodes are described herein. The electrode can be an electrode of an electrochemical cell or battery. The electrode includes a current collector and a film in electrical communication with the current collector. The film may include a carbon phase that holds the film together. The electrode further includes an electrode attachment substance that adheres the film to the current collector.

Claims (23)

1. A method of forming a composite material, the method comprising:

providing a mixture comprising a precursor and silicon particles;

casting the mixture on a surface; and

pyrolysing the precursor to convert the precursor into one or more types of carbon phases to form the composite material, wherein pyrolysing the precursor comprises applying pressure to the precursor.

2. The method of claim 1 , wherein applying pressure to the precursor comprises applying at least 2 bars of pressure.

3. The method of claim 1 , further comprising cycling the composite material.

4. The method of claim 3 , wherein the composite material remains substantially flat and substantially free of wrinkles during cycling.

5. The method of claim 1 , wherein pyrolysing comprises heating the precursor to about 900° C. to about 1350° C.

6. The method of claim 1 , further comprising removing the precursor from the surface prior to pyrolysing the precursor.

7. The method of claim 1 , wherein the composite material is self-supported.

8. The method of claim 1 , wherein at least one of the one or more types of carbon phases is a substantially continuous phase that holds the composite material together such that the silicon particles are distributed throughout the composite material.

9. The method of claim 8 , wherein the at least one of the one or more types of carbon phases that is a substantially continuous phase comprises hard carbon.

10. The method of claim 1 , wherein providing the mixture comprises providing the silicon particles at greater than 0% to about 90% by weight.

11. The method of claim 10 , wherein the composite material comprises the silicon particles at more than about 50% by weight.

12. The method of claim 11 , wherein the composite material comprises the silicon particles at about 60% to about 80% by weight.

13. The method of claim 1 , wherein the precursor comprises polyamic acid or polyimide.

14. The method of claim 1 , wherein providing the mixture comprises providing conductive particles in the mixture.

15. The method of claim 14 , wherein providing the mixture comprises providing metal particles in the mixture.

16. The method of claim 1 , wherein providing the mixture comprises providing graphite particles in the mixture.

17. The method of claim 1 , wherein the composite material is substantially electrochemically active and electrically conductive.

18. The method of claim 17 , wherein the composite material is an anode.

19. The method of claim 1 , wherein the casting comprises casting the mixture on the surface of a metal foil.

20. The method of claim 1 , wherein the casting comprises casting the mixture on the surface of a copper substrate.

Assignments (2)
SECURITY INTEREST Recorded Mar 10, 2026
From: ENEVATE CORPORATION
To: MCANDREWS, HELD & MALLOY LTD.
Reel/Frame 075093/0935 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 15, 2022
From: PARK, BENJAMIN YONG; BROWNE, IAN R.; SCHANK, STEPHEN W.; PIERCE, STEVE
To: ENEVATE CORPORATION
Reel/Frame 059125/0117 →
Continuity (9)
Continuation 17522093 · Nov 9, 2021
Continuation 16694849 · Nov 25, 2019
Continuation 15788564 · Oct 19, 2017
Continuation 14302321 · Jun 11, 2014
Division 13796922 · Mar 12, 2013
Continuation In Part 13333864 · Dec 21, 2011
Provisional Application 61488313 · May 20, 2011
Provisional Application 61426446 · Dec 22, 2010
Related Publication 20220173372A1 · Jun 2, 2022
Cited By (3)
US 12,374,913 US 12,567,752 US 12,580,394