IP Library › Granted Patent US 12,519,176
Granted Patent B2
US 12,519,176 · App. 16/760,017 · Granted Jan 6, 2026

Electrochemical cell and electrochemical cell stack

Inventor: Yasuyuki Uto (Higashiosaka, JP)
Assignee: KYOCERA CORPORATION
H01M50/30H01M50/103H01M50/105H01M50/209H01M50/211H01M50/46H01M50/55H01M50/553
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Quick Facts
Patent No.
US 12,519,176
App. No.
16/760,017
Granted
Jan 6, 2026
Kind
B2
Abstract

An electrochemical cell includes a power-generating element including a semi-solid positive electrode, a semi-solid negative electrode, a separator located between the semi-solid positive electrode and the semi-solid negative electrode, a positive-electrode current collector electrically connected to the semi-solid positive electrode, and a negative-electrode current collector electrically connected to the semi-solid negative electrode; and a packaging body which encases the power-generating element, the packaging body including single or plural holes which open on an inner side of the packaging body and an outer side of the packaging body.

Claims (93)

1 . An electrochemical cell, comprising:

a power-generating element comprising

a semi-solid positive electrode,

a semi-solid negative electrode,

a separator located between the semi-solid positive electrode and the semi-solid negative electrode,

a positive-electrode current collector electrically connected to the semi-solid positive electrode, and

a negative-electrode current collector electrically connected to the semi-solid negative electrode; and

a packaging body which includes an inner space encasing the power-generating element, the packaging body comprising a plurality of holes, which connect the inner space of the packaging body to an outer space of the packaging body during a charging and discharging process of the power-generating element,

wherein

the plurality of holes are configured to allow gas generated by a side reaction occurring in the charging and discharging process to escape out of the packaging body through the plurality of holes, and wherein at least one of the plurality of holes is a cutout at an edge of the packaging body,

the separator of the power-generating element divides the inner space of the packaging body into two separate chambers including a first chamber encasing the positive electrode and the positive-electrode current collector and a second chamber encasing the negative electrode and the negative-electrode current collector,

the first chamber includes a first space between the positive electrode and the positive-electrode current collector,

the second chamber includes a second space between the negative electrode and the negative-electrode current collector,

the package body has a first packaging portion and a second packaging portion, the power-generating element being sandwiched between the first packaging portion and the second packaging portion in a thickness direction of the packaging body, and

the plurality of holes includes:

a first hole in the first packaging portion and covered by the second packaging portion in the thickness direction, the first hole connecting the first space of the first chamber to the outer space of the packaging body to allow gas generated by the positive electrode in the charging and discharging process to escape out of the first chamber through the first hole, and

a second hole in the second packaging portion and covered by the first packaging portion in the thickness direction, the second hole connecting the second space of the second chamber to the outer space of the packaging body to allow gas generated by the negative electrode in the charging and discharging process to escape out of the second chamber through the second hole.

2 . The electrochemical cell according to claim 1 , wherein

the positive-electrode current collector comprises a first plane opposed to the semi-solid positive electrode,

the packaging body comprises a first region which does not overlap with the positive-electrode current collector, as seen in a direction perpendicular to the first plane, and

the plurality of holes is positioned in the first region.

3 . The electrochemical cell according to claim 2 , further comprising:

a positive-electrode terminal electrically connected to the positive-electrode current collector,

wherein, when viewed in a direction perpendicular to the first plane,

the positive-electrode current collector is given a quadrangular shape comprising a first side,

the positive-electrode terminal comprises a first end and a second end, the first end being connected to the first side within the packaging body, the second end being exposed out of the packaging body,

the first region is divided, by a straight line extending from a side opposite to the first side of the positive-electrode current collector, into a third region from which the positive-electrode terminal is exposed and a fourth region which is an other region than the third region, and

the plurality of holes is positioned in the fourth region.

4 . The electrochemical cell according to claim 2 , further comprising:

a positive-electrode terminal electrically connected to the positive-electrode current collector, the positive-electrode terminal comprising a first end and a second end,

wherein, when viewed in a direction perpendicular to the first plane,

the positive-electrode current collector is given a quadrangular shape comprising a first corner and a second corner which is positioned on a diagonal line of the positive-electrode current collector with respect to the first corner,

in the positive-electrode terminal, the first end is connected to the positive-electrode current collector in a vicinity of the first corner within the packaging body, and the second end is exposed out of the packaging body, and

the plurality of holes is positioned in a vicinity of the second corner.

5 . The electrochemical cell according to claim 2 , further comprising:

a positive-electrode terminal electrically connected to the positive-electrode current collector, the positive-electrode terminal comprising a first end and a second end,

wherein, when viewed in a direction perpendicular to the first plane,

the positive-electrode current collector is given a quadrangular shape comprising a first side,

in the positive-electrode terminal, the first end is connected to the first side within the packaging body, and the second end is exposed out of the packaging body,

the first region is divided, by a straight line extending from the first side, into a seventh region from which the positive-electrode terminal is exposed and an eighth region which is an other region than the seventh region, and

the plurality of holes is positioned in the seventh region.

6 . The electrochemical cell according to claim 5 ,

wherein, when viewed in a direction perpendicular to the first plane,

the negative-electrode current collector is given a quadrangular shape comprising a second plane,

the positive-electrode current collector comprises an eleventh region in which the first plane and the second plane overlap with each other,

the packaging body comprises a twelfth region in which an extension region of the eleventh region extending toward an exposed portion of the positive-electrode terminal and the seventh region overlap with each other, and

the plurality of holes is positioned in the twelfth region.

7 . The electrochemical cell according to claim 1 , wherein

the negative-electrode current collector comprises a second plane opposed to the semi-solid negative electrode,

the packaging body comprises a second region which does not overlap with the negative-electrode current collector, as seen in a direction perpendicular to the second plane, and

the plurality of holes is positioned in the second region.

8 . The electrochemical cell according to claim 7 , further comprising:

a negative-electrode terminal electrically connected to the negative-electrode current collector,

wherein, when viewed in a direction perpendicular to the second plane,

the negative-electrode current collector is given a quadrangular shape comprising a second side,

the negative-electrode terminal comprises a first end and a second end, the first end being connected to the second side within the packaging body, the second end being exposed out of the packaging body,

the second region is divided, by a straight line extending from a side opposite to the second side of the negative-electrode current collector, into a fifth region from which the negative-electrode terminal is exposed and a sixth region which is an other region than the fifth region, and

the plurality of holes is positioned in the sixth region.

9 . The electrochemical cell according to claim 7 , further comprising:

a negative-electrode terminal electrically connected to the negative-electrode current collector, the negative-electrode terminal comprising a first end and a second end,

wherein, when viewed in a direction perpendicular to the second plane,

the negative-electrode current collector is given a quadrangular shape comprising a third corner and a fourth corner which is positioned on a diagonal line of the negative-electrode current collector with respect to the third corner,

in the negative-electrode terminal, the first end is connected to the negative-electrode current collector in a vicinity of the third corner within the packaging body, and the second end is exposed out of the packaging body, and

the plurality of holes is positioned in a vicinity of the fourth corner.

10 . The electrochemical cell according to claim 7 , further comprising:

a negative-electrode terminal electrically connected to the negative-electrode current collector, the negative-electrode terminal comprising a first end and a second end,

wherein, when viewed in a direction perpendicular to the second plane,

the negative-electrode current collector is given a quadrangular shape comprising a second side,

in the negative-electrode terminal, the first end is connected to the second side within the packaging body, and the second end is exposed out of the packaging body,

the second region is divided, by a straight line extending from the second side, into a ninth region from which the negative-electrode terminal is exposed and a tenth region which is an other region than the ninth region, and

the plurality of holes is positioned in the ninth region.

11 . The electrochemical cell according to claim 10 ,

wherein, when viewed in a direction perpendicular to the second plane,

the positive-electrode current collector is given a quadrangular shape comprising a first plane,

the negative-electrode current collector comprises a thirteenth region in which the first plane and the second plane overlap with each other,

the packaging body comprises a fourteenth region in which an extension region of the thirteenth region extending toward an exposed portion of the negative-electrode terminal and the ninth region overlap with each other, and

the plurality of holes is positioned in the fourteenth region.

12 . The electrochemical cell according to claim 1 , wherein

the first packaging portion covers the positive-electrode current collector,

the second packaging portion covers the negative-electrode current collector, and

the first packaging portion is separate from the second packaging portion and opposite to the second packaging portion in the thickness direction of the packaging body.

13 . The electrochemical cell according to claim 12 , wherein each of the plurality of holes does not pass through both the first packaging portion and the second packaging portion.

14 . The electrochemical cell according to claim 1 , wherein

the semi-solid positive electrode is configured to

receive electrons from the positive-electrode current collector during a discharging process, and

release the electrons to the positive-electrode current collector during a charging process.

15 . The electrochemical cell according to claim 1 , wherein

the semi-solid negative electrode is configured to

release electrons to the negative-electrode current collector during discharging process, and

receive the electrons from the negative-electrode current collector during charging process.

16 . The electrochemical cell according to claim 1 , wherein each of the plurality of holes connects the inner space of the packaging body to the outer space of the packaging at all times to allow the gas generated by the side reaction occurring during the charging and discharging process of the power-generating element to escape out of the packaging body.

17 . An electrochemical cell stack, comprising:

a plurality of electrochemical cells including the electrochemical cell according to claim 1 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 29, 2020
From: UTO, YASUYUKI
To: KYOCERA CORPORATION
Reel/Frame 052531/0305 →
Priority Claims (1)
JP 2017-209197 · Oct 30, 2017 · national
Continuity (1)
Related Publication 20200350537A1 · Nov 5, 2020
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