IP Library Granted Patent US 12689043
Granted Patent B2
US 12689043 · App. 18/122,643 · Granted Jul 21, 2026

Battery cell

Inventors: Chien-Ming Lai (Zhubei City, TW); Sung-Chun Chang (Hsinchu City, TW); Chiu-Ping Huang (Kaohsiung City, TW); Li-Duan Tsai (Hsinchu City, TW)
Assignee: INDUSTRIAL TECHNOLOGY RESEARCH INSTITUTE
H01M8/04007H01M8/0245H01M8/0271H01M8/1004
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Quick Facts
Patent No.
US 12689043
App. No.
18/122,643
Granted
Jul 21, 2026
Kind
B2
Abstract

A battery cell including a membrane electrode assembly, a cathode bipolar plate and an anode bipolar plate. The anode bipolar plate includes a metal layer and a thermally conductive layer. The metal layer is stacked on a side of the membrane electrode assembly that is located farthest away from the cathode bipolar plate. The metal layer has a bottom surface, a top surface, a first side surface and a second side surface. The bottom surface faces the membrane electrode assembly. The thermally conductive layer includes a first cover layer and two second cover layers. The first cover layer covers the top surface of the metal layer. The two second cover layers protrude from two opposite sides of the first cover layer, respectively. The two second cover layers at least partially cover the first side surface and the second side surface of the metal layer, respectively.

Claims (18)

1 . A battery cell, comprising:

a membrane electrode assembly;

a cathode bipolar plate, stacked on a side of the membrane electrode assembly; and

an anode bipolar plate, comprising a metal layer and a thermally conductive layer, wherein the metal layer is stacked on a side of the membrane electrode assembly that is located farthest away from the cathode bipolar plate, the metal layer has a bottom surface, a top surface, a first side surface and a second side surface, the bottom surface and the top surface face away from each other, the first side surface and the second side surface face away from each other, the first side surface and the second side surface connect the bottom surface and the top surface and are located between the bottom surface and the top surface, the bottom surface faces the membrane electrode assembly, the thermally conductive layer comprises a first cover layer and two second cover layers, the first cover layer covers the top surface of the metal layer, the two second cover layers protrude from two opposite sides of the first cover layer, respectively, and the two second cover layers at least partially cover the first side surface and the second side surface of the metal layer, respectively;

wherein a thermal conductivity of the thermally conductive layer is higher than a thermal conductivity of the metal layer; and

wherein the two second cover layers stick out of the membrane electrode assembly along a horizontal direction perpendicular to a stacking direction along which the membrane electrode assembly, the cathode bipolar plate and the anode bipolar plate are stacked.

2 . The battery cell according to claim 1 , wherein the metal layer further has a third side surface and a fourth side surface facing away from each other, the third side surface and the fourth side surface connect the first side surface and the second side surface and are located between the first side surface and the second side surface, the thermally conductive layer further comprises two third cover layers, the two third cover layers are located between the two second cover layers and protrude from two opposite sides of the first cover layer, respectively, and the two third cover layers at least partially cover the third side surface and the fourth side surface of the metal layer, respectively.

3 . The battery cell according to claim 1 , wherein the thermally conductive layer is made of a material containing carbon.

4 . The battery cell according to claim 3 , wherein the thermally conductive layer is made of a natural graphite or a synthetic graphite.

5 . The battery cell according to claim 1 , wherein the thermally conductive layer is electrically conductive.

6 . The battery cell according to claim 1 , wherein the two second cover layers entirely cover the first side surface and the second side surface of the metal layer, respectively.

7 . The battery cell according to claim 6 , wherein the membrane electrode assembly comprises an anode side structure, a cathode side structure and a ion exchange membrane, the ion exchange membrane is located between the anode side structure and the cathode side structure, the cathode bipolar plate is stacked on a side of the cathode side structure that is located farthest away from the ion exchange membrane, and the metal layer is stacked on a side of the anode side structure that is located farthest away from the ion exchange membrane.

8 . The battery cell according to claim 7 , further comprising a first sealing member and a second sealing member, wherein the first sealing member surrounds the anode side structure and is located between the metal layer and the ion exchange membrane, and the second sealing member surrounds the cathode side structure and is located between the cathode bipolar plate and the ion exchange membrane.

9 . The battery cell according to claim 8 , wherein the first sealing member has a side surface facing away from the anode side structure, and the two second cover layers at least partially cover the side surface of the first sealing member.

10 . The battery cell according to claim 9 , wherein the second sealing member has a side surface facing away from the cathode side structure, and the two second cover layers entirely cover the side surface of the first sealing member and the side surface of the second sealing member.

11 . The battery cell according to claim 1 , wherein a thickness of the metal layer is smaller than or equal to twice of a thickness of the thermally conductive layer.

12 . The battery cell according to claim 1 , wherein a thickness of the thermally conductive layer ranges from 25 micrometers to 75 micrometers.

13 . The battery cell according to claim 1 , wherein the thermally conductive layer is attached to the metal layer via mechanical pressing.