Anode for lithium metal battery, and electrochemical device comprising same
US-12176528-B2 · Dec 24, 2024 · US
US10084161B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10084161-B2 |
| Application number | US-67176908-A |
| Country | US |
| Kind code | B2 |
| Filing date | Aug 12, 2008 |
| Priority date | Aug 23, 2007 |
| Publication date | Sep 25, 2018 |
| Grant date | Sep 25, 2018 |
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A battery includes an electrode body having a positive electrode and a negative electrode and also includes an exterior case for receiving the electrode body. An insulation film for isolating the exterior case and the electrode body from each other is placed between an inner wall surface of the exterior case and the electrode body. The insulation film has a bag-like shape in which the electrode body is inserted. The bag-like insulation film has a gap filling section on its surface facing a side surface of the electrode body, and the gap filling section closes a gap between the electrode body and the inner wall surface of the exterior case.
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The invention claimed is: 1. A battery comprising an electrode body having a positive electrode and a negative electrode, and an exterior case that accommodates the electrode body, wherein an insulation film that separates the exterior case and the electrode body is disposed between an inner wall surface of the exterior case and the electrode body; the insulation film is formed in a bag-shape into which the electrode body is inserted; one or a plurality of sheet-shaped gap filling members formed in a sheet-shape form and closing a gap between the electrode body and the inner wall surface of the exterior case are joined to a surface of the bag-shaped insulation film that faces a side surface of the electrode body; the electrode body is a flat-shaped wound electrode body obtained by winding a sheet-shaped positive electrode and a sheet-shaped negative electrode, and the sheet-shaped gap filling member is disposed in a position facing a flat surface of the wound electrode body. 2. The battery according to claim 1 , wherein the sheet-shaped gap filling member is spot fused to a peripheral portion of the bag-shaped insulation film on a bag opening side into which the electrode body is inserted. 3. The battery according to claim 1 , that is used as a unit battery for constituting a battery pack configured by arranging a plurality of unit batteries in a predetermined direction and restraining the unit batteries in the arrangement direction, wherein the sheet-shaped gap filling member and the bag-shaped insulating film are joined by spot fusion, and the spot fusion location is a location in which no load is received during restraining in the arrangement direction. 4. A method of producing a battery provided with an electrode body having a positive electrode and a negative electrode, and an exterior case that accommodates the electrode body, comprising: a step (a) of inserting the electrode body into an insulation film formed in a bag-shape; and a step (b) of accommodating the electrode body together with the bag-shaped insulation film in the exterior case, wherein one or a plurality of sheet-shaped gap filling members formed in a sheet-shape form are joined in advance to a surface of the bag-shaped insulation film that faces a side surface of the electrode body before the step (a), when the electrode body is accommodated together with the bag-shaped insulation film in the exterior case in the step (b), the gap between the electrode body and an inner wall surface of the exterior case is closed by the one or a plurality of sheet-shaped gap filling members, the electrode body is a flat-shaped wound electrode body obtained by winding a sheet-shaped positive electrode and a sheet-shaped negative electrode, and the sheet-shaped gap filling member is disposed in a position facing a flat surface of the wound electrode body. 5. The production method according to claim 4 , wherein the sheet-shaped gap filling member is spot fused to a peripheral portion of the bag-shaped insulation film on a bag opening side into which the electrode body is inserted. 6. The production method according to claim 4 , wherein a plurality of sheet-shaped gap filling members formed in a sheet-shape are joined to a surface of the bag-shaped insulation film that faces the side surface of the electrode body before the step (a), and the plurality of the sheet-shaped gap filling members are fused together and integrated in advance before being joined to the bag-shaped insulation film. 7. A vehicle, comprising the battery described in claim 1 . 8. The battery according to claim 1 , wherein a side of the one or the plurality of sheet-shaped gap filling members contacts a surface of the bag-shaped insulation film, and an opposite side of the one or the plurality of sheet-shaped gap filling members contacts a flat surface of the wound electrode body. 9. The production method according to claim 4 , wherein a side of the one or the plurality of sheet-shaped gap filling members contacts a surface of the bag-shaped insulation film, and an opposite side of the one or the plurality of sheet-shaped gap filling members contacts a flat surface of the wound electrode body. 10. The battery according to claim 1 , wherein the one or the plurality of sheet-shaped gap filling members are fused to the surface of the bag-shaped insulation film that faces the side surface of the electrode body by fusion. 11. The production method according to claim 4 , wherein the one or the plurality of sheet-shaped gap filling members formed in a sheet-shape form are fused in advance to a surface of the bag-shaped insulation film that faces a side surface of the electrode body before the step (a). 12. The battery according to claim 1 , wherein the one or the plurality of sheet-shaped gap filling members directly contact the surface of the bag-shaped insulation film that faces the side surface of the electrode body by fusion. 13. The production method according to claim 4 , wherein the one or the plurality of sheet-shaped gap filling members formed in a sheet-shape form directly contact a surface of the bag-shaped insulation film that faces a side surface of the electrode body after the step (a).
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