IP Library Granted Patent US 10,985,361
Granted Patent B2
US 10,985,361 · App. 16/540,716 · Granted Apr 20, 2021

Electrodes configured to reduce occurrences of short circuits and/or lithium plating in batteries

Inventors: Frederic C. Bonhomme (Foothill Ranch, CA); Steve Pierce (Pleasanton, CA)
H01M4/0435H01M4/0404H01M4/134H01M4/1395H01M4/621H01M4/622H01M4/625H01M4/661H01M4/667H01M10/4235H01M10/0525H01M2004/021Y02E60/10Y02P70/50Y10T156/10
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 10,985,361
App. No.
16/540,716
Granted
Apr 20, 2021
Kind
B2
Abstract

An example method of reducing short circuits from occurring in a battery can include providing a current collector coated with a safety layer. The method can include providing an electrochemically active material film on the safety layer such that the safety layer is configured to reduce exposure of the current collector to an opposing electrode. The method can also include adhering the electrochemically active material film to the current collector via the safety layer.

Claims (97)

1. An electrode comprising:

a current collector;

a safety layer disposed on the current collector and configured to reduce exposure of the current collector to an opposing electrode; and

an electrochemically active material film disposed on the safety layer, wherein the safety layer extends over an area of the current collector that the electrochemically active material film extends over and beyond, and wherein the electrochemically active material film comprises a carbon phase that holds the film together.

2. The electrode of claim 1 , wherein the safety layer is configured to adhere the electrochemically active material film to the current collector.

3. The electrode of claim 1 , wherein the electrochemically active material film comprises an anode film, and wherein the safety layer is configured to reduce exposure of the current collector to lithium deposition in a lithium ion battery.

4. The electrode of claim 1 , wherein the safety layer is in a substantially solid state.

5. The electrode of claim 1 , wherein the electrochemically active material film comprises silicon.

6. The electrode of claim 5 , wherein the electrochemically active material film comprises silicon at more than 30% by weight of the film.

7. The electrode of claim 6 , wherein the electrochemically active material film comprises silicon at more than 50% by weight of the film.

8. The electrode of claim 7 , wherein the electrochemically active material film comprises silicon at less than 90% by weight of the film.

9. The electrode of claim 1 , wherein the electrochemically active material film comprises a monolithic self-supporting film.

10. The electrode of claim 1 , wherein the electrochemically active material film comprises porosity that is substantially free of material forming the safety layer.

11. The electrode of claim 1 , wherein portions of the electrochemically active material film penetrate the safety layer and come in direct contact with the current collector.

12. The electrode of claim 1 , wherein the safety layer in the aggregate is substantially electrically nonconductive.

13. The electrode of claim 1 , wherein the safety layer is a substantially uniform layer.

14. The electrode of claim 1 , wherein the safety layer comprises a polymer.

15. The electrode of claim 14 , wherein the polymer comprises polyamideimide, polyvinylidene fluoride, or polyacrylic acid.

16. An electrode comprising:

a current collector;

a safety layer disposed on the current collector and configured to reduce exposure of the current collector to an opposing electrode; and

an electrochemically active material film disposed on the safety layer, wherein the safety layer extends over an area of the current collector that the electrochemically active material film extends over and beyond, and wherein the electrochemically active material film comprises:

a carbon phase that holds the film together; and

silicon particles distributed within the carbon phase.

17. The electrode of claim 16 , wherein the safety layer is configured to adhere the electrochemically active material film to the current collector.

18. The electrode of claim 16 , wherein the electrochemically active material film comprises an anode film, and wherein the safety layer is configured to reduce exposure of the current collector to lithium deposition in a lithium ion battery.

19. The electrode of claim 16 , wherein the safety layer is in a substantially solid state.

20. The electrode of claim 16 , wherein the electrochemically active material film comprises silicon.

21. The electrode of claim 20 , wherein the electrochemically active material film comprises silicon at more than 30% by weight of the film.

22. The electrode of claim 21 , wherein the electrochemically active material film comprises silicon at more than 50% by weight of the film.

23. The electrode of claim 22 , wherein the electrochemically active material film comprises silicon at less than 90% by weight of the film.

24. The electrode of claim 16 , wherein the electrochemically active material film comprises a monolithic self-supporting film.

25. The electrode of claim 16 , wherein the carbon phase comprises hard carbon.

26. The electrode of claim 16 , wherein the electrochemically active material film comprises porosity that is substantially free of material forming the safety layer.

27. The electrode of claim 16 , wherein portions of the electrochemically active material film penetrate the safety layer and come in direct contact with the current collector.

28. The electrode of claim 16 , wherein the safety layer in the aggregate is substantially electrically nonconductive.

29. The electrode of claim 16 , wherein the safety layer is a substantially uniform layer.

30. The electrode of claim 16 , wherein the safety layer comprises a polymer.

31. The electrode of claim 30 , wherein the polymer comprises polyamideimide, polyvinylidene fluoride, or polyacrylic acid.

32. An electrode comprising:

a current collector;

a safety layer disposed on the current collector and configured to reduce exposure of the current collector to an opposing electrode; and

an electrochemically active material film disposed on the safety layer, wherein:

the safety layer extends over an area of the current collector that the electrochemically active material film extends over and beyond;

the electrochemically active material film comprises a carbon phase that holds the film together; and

the carbon phase comprises hard carbon.

33. The electrode of claim 32 , wherein the safety layer is configured to adhere the electrochemically active material film to the current collector.

34. The electrode of claim 32 , wherein the electrochemically active material film comprises an anode film, and wherein the safety layer is configured to reduce exposure of the current collector to lithium deposition in a lithium ion battery.

35. The electrode of claim 32 , wherein the safety layer is in a substantially solid state.

36. The electrode of claim 32 , wherein the electrochemically active material film comprises silicon.

37. The electrode of claim 36 , wherein the electrochemically active material film comprises silicon at more than 30% by weight of the film.

38. The electrode of claim 37 , wherein the electrochemically active material film comprises silicon at more than 50% by weight of the film.

39. The electrode of claim 38 , wherein the electrochemically active material film comprises silicon at less than 90% by weight of the film.

40. The electrode of claim 32 , wherein the electrochemically active material film comprises a monolithic self-supporting film.

41. The electrode of claim 32 , wherein the electrochemically active material film comprises porosity that is substantially free of material forming the safety layer.

42. The electrode of claim 32 , wherein portions of the electrochemically active material film penetrate the safety layer and come in direct contact with the current collector.

43. The electrode of claim 32 , wherein the safety layer in the aggregate is substantially electrically nonconductive.

44. The electrode of claim 32 , wherein the safety layer is a substantially uniform layer.

45. The electrode of claim 32 , wherein the safety layer comprises a polymer.

46. The electrode of claim 45 , wherein the polymer comprises polyamideimide, polyvinylidene fluoride, or polyacrylic acid.

47. An electrode comprising:

a current collector;

a safety layer disposed on the current collector and configured to reduce exposure of the current collector to an opposing electrode; and

an electrochemically active material film disposed on the safety layer, wherein:

the safety layer extends over an area of the current collector that the electrochemically active material film extends over and beyond; and

the electrochemically active material film comprises porosity that is substantially free of material forming the safety layer.

48. The electrode of claim 47 , wherein the safety layer is configured to adhere the electrochemically active material film to the current collector.

49. The electrode of claim 47 , wherein the electrochemically active material film comprises an anode film, and wherein the safety layer is configured to reduce exposure of the current collector to lithium deposition in a lithium ion battery.

50. The electrode of claim 47 , wherein the safety layer is in a substantially solid state.

51. The electrode of claim 47 , wherein the electrochemically active material film comprises silicon.

52. The electrode of claim 51 , wherein the electrochemically active material film comprises silicon at more than 30% by weight of the film.

53. The electrode of claim 52 , wherein the electrochemically active material film comprises silicon at more than 50% by weight of the film.

54. The electrode of claim 53 , wherein the electrochemically active material film comprises silicon at less than 90% by weight of the film.

55. The electrode of claim 47 , wherein the electrochemically active material film comprises a monolithic self-supporting film.

56. The electrode of claim 47 , wherein portions of the electrochemically active material film penetrate the safety layer and come in direct contact with the current collector.

57. The electrode of claim 47 , wherein the safety layer in the aggregate is substantially electrically nonconductive.

58. The electrode of claim 47 , wherein the safety layer is a substantially uniform layer.

59. The electrode of claim 47 , wherein the safety layer comprises a polymer.

60. The electrode of claim 59 , wherein the polymer comprises polyamideimide, polyvinylidene fluoride, or polyacrylic acid.

61. An electrode comprising:

a current collector;

a safety layer disposed on the current collector and configured to reduce exposure of the current collector to an opposing electrode; and

an electrochemically active material film disposed on the safety layer, wherein:

the safety layer extends over an area of the current collector that the electrochemically active material film extends over and beyond; and

the safety layer in the aggregate is substantially electrically nonconductive.

62. The electrode of claim 61 , wherein the safety layer is configured to adhere the electrochemically active material film to the current collector.

63. The electrode of claim 61 , wherein the electrochemically active material film comprises an anode film, and wherein the safety layer is configured to reduce exposure of the current collector to lithium deposition in a lithium ion battery.

64. The electrode of claim 61 , wherein the safety layer is in a substantially solid state.

65. The electrode of claim 61 , wherein the electrochemically active material film comprises silicon.

66. The electrode of claim 65 , wherein the electrochemically active material film comprises silicon at more than 30% by weight of the film.

67. The electrode of claim 66 , wherein the electrochemically active material film comprises silicon at more than 50% by weight of the film.

68. The electrode of claim 67 , wherein the electrochemically active material film comprises silicon at less than 90% by weight of the film.

69. The electrode of claim 61 , wherein the electrochemically active material film comprises a monolithic self-supporting film.

70. The electrode of claim 61 , wherein portions of the electrochemically active material film penetrate the safety layer and come in direct contact with the current collector.

71. The electrode of claim 61 , wherein the safety layer is a substantially uniform layer.

72. The electrode of claim 61 , wherein the safety layer comprises a polymer.

73. The electrode of claim 72 , wherein the polymer comprises polyamideimide, polyvinylidene fluoride, or polyacrylic acid.

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 Aug 14, 2019
From: BONHOMME, FREDERIC C.; PIERCE, STEVE
To: ENEVATE CORPORATION
Reel/Frame 050055/0610 →
Continuity (7)
Continuation 15596907 · May 16, 2017
Continuation In Part 14302321 · Jun 11, 2014
Division 13796922 · Mar 12, 2013
Continuation In Part 13333864 · Dec 21, 2011
Provisional Application 61426446 · Dec 22, 2010
Provisional Application 61488313 · May 20, 2011
Related Publication 20190372088A1 · Dec 5, 2019
Cited By (4)
US 12,374,913 US 12,567,752 US 12,580,394 US 12,626,929