IP Library Granted Patent US 11,605,862
Granted Patent B2
US 11,605,862 · App. 17/733,299 · Granted Mar 14, 2023

Batteries utilizing anode coatings directly on nanoporous separators

Inventor: Steven A. Carlson (Cambridge, MA)
Assignee: Meta Materials Inc.
H01M50/46H01M4/0402H01M4/0421H01M4/405H01M4/64H01M4/661H01M4/70H01M6/14H01M10/052H01M10/0525H01M10/0585H01M10/4235H01M50/403H01M50/446H01M4/136H01M6/16H01M2004/028Y02P70/50Y02T10/70Y10T29/4911Y10T29/49115
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Quick Facts
Patent No.
US 11,605,862
App. No.
17/733,299
Granted
Mar 14, 2023
Kind
B2
Abstract

Provided are methods of preparing a separator/anode assembly for use in an electric current producing cell, wherein the assembly comprises an anode current collector layer interposed between a first anode layer and a second anode layer and a porous separator layer on the side of the first anode layer opposite to the anode current collector layer, wherein the first anode layer is coated directly on the separator layer.

Claims (30)

1. A lithium battery comprising:

an anode layer comprising a pigment dispersion, wherein said pigment dispersion comprises an organic solvent, an anode active material in pigment form, and a conductive carbon pigment;

a porous separator layer, wherein said porous separator layer is selected so that there is no penetration of said conductive carbon pigment into said porous separator layer; and

an anode current collector, wherein said anode layer is disposed between said porous separator layer and said anode current collector.

2. The lithium battery of claim 1 , wherein said porous separator layer is selected so that there is no penetration of said anode active material into the porous separator layer.

3. The lithium battery of claim 1 , wherein said porous separator layer has an average pore diameter that is smaller than the average diameter of said anode active material in pigment form.

4. The lithium battery of claim 1 , wherein said porous separator layer has an average pore diameter that is smaller than the average diameter of said conductive carbon pigment.

5. The lithium battery of claim 1 , wherein said anode current collector comprises a metal.

6. The lithium battery of claim 1 , wherein said anode active material in pigment form has a diameter between 0.5 to 5 microns.

7. The lithium battery of claim 1 , wherein said anode layer has a contour that matches the contour of the said porous separator layer.

8. A lithium battery comprising:

an anode layer comprising a pigment dispersion, wherein said pigment dispersion comprises an organic solvent or water, an anode active material in pigment form, and a conductive carbon pigment; wherein said anode active material in pigment form has a diameter between 0.5 to 5 microns;

a porous separator layer, wherein said porous separator layer has an average pore diameter that is less than 0.2 microns; and

an anode current collector, wherein said anode layer is disposed between said porous separator layer and said anode current collector.

9. The lithium battery of claim 8 , wherein said porous separator layer has an average pore diameter that is less than 0.1 microns.

10. The lithium battery of claim 8 , wherein said anode current collector layer comprises a metal.

11. The lithium battery of claim 8 , wherein said porous separator layer is selected so that there is no penetration of said anode active material into the porous separator layer.

12. The lithium battery of claim 8 , wherein said porous separator layer is selected so that there is no penetration of said conductive carbon pigment into said porous separator layer.

13. The lithium battery of claim 8 , wherein said porous separator layer has an average pore diameter that is smaller than the average diameter of said anode active material in pigment form.

14. The lithium battery of claim 8 , wherein said porous separator layer has an average pore diameter that is smaller than the average diameter of said conductive carbon pigment.

15. The lithium battery of claim 8 , wherein said anode layer has a contour that matches the contour of the said porous separator layer.

16. A lithium battery comprising:

an anode layer comprising a pigment dispersion, wherein said pigment dispersion comprises an organic solvent, an anode active material in pigment form, and a conductive pigment;

a porous separator layer, wherein said porous separator layer is selected so that there is no penetration of said conductive pigment into said porous separator layer; and

an anode current collector, wherein said anode layer is disposed between said porous separator layer and said anode current collector.

17. The lithium battery of claim 16 , wherein said porous separator layer is selected so that there is no penetration of said anode active material into the porous separator layer.

18. The lithium battery of claim 16 , wherein said porous separator layer has an average pore diameter that is smaller than the average diameter of said anode active material in pigment form.

19. The lithium battery of claim 16 , wherein said porous separator layer has an average pore diameter that is smaller than the average diameter of said conductive pigment.

20. The lithium battery of claim 16 , wherein said anode current collector comprises a metal.

21. The lithium battery of claim 16 , wherein said anode active material in pigment form has a diameter between 0.5 to 5 microns.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 11, 2024
From: META MATERIALS INC.
To: 24M TECHNOLOGIES, INC.
Reel/Frame 068933/0729 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 20, 2022
From: OPTODOT CORPORATION
To: META MATERIALS INC.
Reel/Frame 061483/0882 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 25, 2022
From: CARLSON, STEVEN A.
To: OPTODOT CORPORATION
Reel/Frame 060015/0291 →
Continuity (12)
Continuation 17235272 · Apr 20, 2021
Continuation 17179090 · Feb 18, 2021
Continuation 16556483 · Aug 30, 2019
Continuation 15492126 · Apr 20, 2017
Continuation 14605349 · Jan 26, 2015
Division 13302782 · Nov 22, 2011
Continuation In Part PCTUS2010001539 · May 26, 2010
Continuation In Part PCTUS2010001537 · May 26, 2010
Continuation In Part PCTUS2010001536 · May 26, 2010
Continuation In Part PCTUS2010001535 · May 26, 2010
Provisional Application 61217132 · May 26, 2009
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