IP Library Patent Application 18110627
Patent Application
App. No. 18/110,627

DRY ELECTRODE MANUFACTURE BY TEMPERATURE ACTIVATION METHOD

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Patent No.
US None
App. No.
18/110,627
Abstract

A method of manufacturing a free-standing electrode film includes preparing a mixture including an electrode active material, a conductive material, and a binder, heating the mixture to 70° C. or higher, subjecting the mixture to a shear force, and, after the mixture has been subjected to the shear force, pressing the mixture into a free-standing film. The method may further include adding a solvent to the mixture. A resulting free-standing electrode film may include an amount of binder less than 4% by weight.

Claims (25)

1 - 20 . (canceled)

21 . A free-standing electrode film comprising:

an electrode active material; and

one or more binders totaling less than 4 percent by weight of the free-standing electrode film, the electrode active material having an exposed surface that is unblocked by the one or more binders.

22 . The free-standing electrode film of claim 21 , wherein the one or more binders comprise polytetrafluoroethylene (PTFE).

23 . The free-standing electrode film of claim 21 , wherein the one or more binders total 3.5 percent by weight of the free-standing electrode film.

24 . The free-standing electrode film of claim 21 , wherein the electrode active material is in an amount 82-99 percent by weight of the free-standing electrode film.

25 . The free-standing electrode film of claim 21 , wherein the electrode active material comprises one or more materials selected from the group consisting of activated carbon, graphite, hard carbon, and metal oxide.

26 . The free-standing electrode film of claim 21 , further comprising a conductive material.

27 . The free-standing electrode film of claim 26 , wherein the conductive material is in an amount less than 10 percent by weight of the free-standing electrode film.

28 . The free-standing electrode film of claim 27 , wherein the conductive material is 3.5 percent by weight of the free-standing electrode film.

29 . The free-standing electrode film of claim 21 , further comprising solvent in an amount less than 3 percent by weight of the free-standing electrode film.

30 . The free-standing electrode film of claim 29 , wherein the solvent has a boiling point of less than 130° C.

31 . The free-standing electrode film of claim 29 , wherein the solvent includes one or more chemicals selected from the group consisting of a hydrocarbon, an acetate ester, an alcohol, a glycol, ethanol, methanol, isopropanol, acetone, diethyl carbonate, and dimethyl carbonate.

32 . An electrode for use in an energy storage device, the electrode comprising:

a current collector; and

an electrode film laminated on the current collector, the electrode film comprising an electrode active material and one or more binders totaling less than 4 percent by weight of the electrode film, the electrode active material having an exposed surface that is unblocked by the one or more binders.

33 . The electrode of claim 32 , wherein the one or more binders comprise polytetrafluoroethylene (PTFE).

34 . The electrode of claim 32 , wherein the one or more binders total 3.5 percent by weight of the electrode film.

35 . The electrode of claim 32 , wherein the electrode active material is in an amount 82-99 percent by weight of the electrode film.

36 . The electrode of claim 32 , wherein the electrode active material comprises one or more materials selected from the group consisting of activated carbon, graphite, hard carbon, and metal oxide.

37 . The electrode of claim 32 , wherein the electrode film further comprises a conductive material.

38 . The electrode of claim 37 , wherein the conductive material is in an amount less than 10 percent by weight of the electrode film.

39 . The electrode of claim 38 , wherein the conductive material is 3.5 percent by weight of the electrode film.

40 . The electrode of claim 32 , wherein the electrode film further comprises solvent in an amount less than 3 percent by weight of the electrode film.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 12, 2023
From: ZHONG, LINDA; ZEA, MARTIN MATTHEW; QIU, KATHLEEN JINGLING; SHAW, ERIKA
To: LICAP TECHNOLOGIES, INC.
Reel/Frame 065843/0115 →