IP Library Granted Patent US 12,683,257
Granted Patent B2
US 12,683,257 · App. 18/334,686 · Granted Jul 14, 2026

Electrochemical battery cell including a conductive layer and method of making the same

Inventor: Seung-Woo Chu (Clawson, MI)
Assignee: GM Global Technology Operations LLC
H01M50/636H01M10/0565H01M10/0569H01M10/615H01M50/152H01M50/166
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Quick Facts
Patent No.
US 12,683,257
App. No.
18/334,686
Granted
Jul 14, 2026
Kind
B2
Abstract

A method for making a battery cell includes: disposing an electrode assembly within a battery can; assembling a top cap assembly to the battery can to form a battery cell having at least a first filling hole and a second filling hole; disposing a first portion of a liquid solution within the battery cell via the first filling hole, the liquid solution including an organic solvent, a cross-linkable polymer and a cross-linking agent; converting the first portion of the liquid solution into a first conductive layer disposed between the electrode assembly and the battery can; disposing a second portion of the liquid solution within the battery cell via the second filling hole; converting the second portion of the liquid solution into a second conductive layer disposed between the electrode assembly and the battery can; and filling the battery cell with a liquid electrolyte via an electrolyte filling hole.

Claims (31)

1 . A method for making a battery cell comprising:

disposing an electrode assembly within a battery can;

assembling a top cap assembly to the battery can to form the battery cell having at least a first filling hole and a second filling hole;

disposing a first portion of a liquid solution within the battery cell via the first filling hole, the liquid solution including an organic solvent, a cross-linkable polymer and a cross-linking agent;

converting the first portion of the liquid solution into a first conductive layer disposed between the electrode assembly and the battery can;

disposing a second portion of the liquid solution within the battery cell via the second filling hole;

converting the second portion of the liquid solution into a second conductive layer disposed between the electrode assembly and the battery can; and

filling the battery cell with a liquid electrolyte via an electrolyte filling hole.

2 . The method of making a battery cell as recited in claim 1 , wherein converting at least one of the first portion and/or the second portion of the liquid solution, respectively, into at least one of the first and/or second conductive layer includes reacting the cross-linkable polymer and the cross-linking agent of at least one of the first and/or second portion of the liquid solution to form a reaction product, wherein the organic solvent is contained within the reaction product.

3 . The method of making a battery cell as recited in claim 1 , wherein the battery cell is in a first position when the first portion of the liquid solution is converted into the first conductive layer, and further including: rotating the battery cell into a second position prior to converting the second portion of the liquid solution into the second conductive layer.

4 . The method of making a battery cell as recited in claim 1 , wherein converting the first portion of the liquid solution into the first conductive layer includes applying heat to at least a first side wall of the battery can; and wherein converting the second portion of the liquid solution into the second conductive layer includes applying heat to at least a second side wall of the battery can.

5 . The method of making a battery cell as recited in claim 1 , wherein the first conductive layer is in contact with a first side wall of the battery can and a first side portion of the electrode assembly; and wherein the second conductive layer is in contact with a second side wall of the battery can and a second side portion of the electrode assembly.

6 . The method of making a battery cell as recited in claim 1 , wherein at least one of the first filling hole and the second filing hole is disposed in the top cap assembly.

7 . The method of making a battery cell as recited in claim 1 , wherein at least one of the first filling hole and the second filling hole is disposed in the battery can.

8 . The method of making a battery cell as recited in claim 1 , further including pre-warming the battery can prior to disposing at least one of the first portion of the liquid solution and/or the second portion of the liquid solution within the battery cell.

9 . The method of making a battery cell as recited in claim 1 , wherein filling the battery cell with the liquid electrolyte includes vacuum filling.

10 . A method for making a battery cell comprising:

disposing an electrode assembly within a battery can;

assembling a top cap assembly to the battery can to form a battery cell having two filling holes;

disposing a liquid solution within the battery cell via at least one of the two filling holes, the liquid solution including an organic solvent, a cross-linkable polymer and a cross-linking agent;

converting the liquid solution into at least one conductive layer disposed between at least one side portion of the electrode assembly and the battery can, wherein converting the liquid solution into the at least one conductive layer includes reacting the cross-linkable polymer and the cross-linking agent of the liquid solution to form a reaction product, wherein the organic solvent is contained within the reaction product; and

filling the battery cell with a liquid electrolyte using vacuum filling.

11 . The method of making a battery cell as recited in claim 10 , wherein disposing the liquid solution within the battery cell further includes: disposing a first portion of the liquid solution within the battery cell via one of the two filling holes; and disposing a second portion of the liquid solution within the battery cell via another of the two filling holes.

12 . The method of making a battery cell as recited in claim 11 , further including: rotating the battery cell from a first position to a second position before disposing the second portion of the liquid solution within the battery cell.

13 . The method of making a battery cell as recited in claim 12 , further including storing the battery cell for a pre-defined period of time in the first position before rotating the battery cell to the second position.

14 . The method of making a battery cell as recited in claim 13 , further including storing the battery cell in the second position after rotating the battery cell from the first position into the second position.

15 . The method of making a battery cell as recited in claim 12 , wherein the at least one conductive layer includes two conductive layers, the first portion of the liquid solution is converted into one of the two conductive layers when the battery cell is in the first position, and the second portion of liquid solution is converted into another of the two conductive layers when the battery cell is in the second position.

16 . The method of making a battery cell as recited in claim 15 , wherein one of the two conductive layers is disposed between the battery can and at one side portion of the electrode assembly, and another of the two conducive layers is disposed between the battery can and another side portion of the electrode assembly.

17 . The method of making a battery cell as recited in claim 16 , wherein one of two conductive layers is in contact with the battery can and one side portion of the electrode assembly, and another of the two conductive layers is in contact with the battery can and another side portion of the electrode assembly.

18 . The method of making a battery cell as recited in claim 10 , wherein the organic solvent of the liquid solution includes one of an alkyl phosphate or a fluorinated alkyl phosphate, and reacting the cross-linkable polymer and the cross-linking agent of the liquid solution to form the reaction product includes applying heat to the battery cell.

19 . The method of making a battery cell as recited in claim 10 , further including pre-warming the battery can prior to disposing the liquid solution within the battery cell.