Electrode for lithium secondary battery and lithium secondary battery comprising same
US-2019334157-A1 · Oct 31, 2019 · US
US11476468B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11476468-B2 |
| Application number | US-201816488485-A |
| Country | US |
| Kind code | B2 |
| Filing date | Nov 8, 2018 |
| Priority date | Nov 22, 2017 |
| Publication date | Oct 18, 2022 |
| Grant date | Oct 18, 2022 |
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The present invention provides an electrode assembly, in which a plurality of electrodes are laminated, and a separator is inserted between adjacent electrodes. The outermost electrode disposed at an outermost layer of the electrode assembly includes a slurry applied to one surface of a current collector, and a protection layer adhered to the other surface of the current collector. Further, the outermost electrode is laminated to allow the slurry to contact the separator.Furthermore, a method for manufacturing the electrode assembly comprises applying a slurry to one surface of a current collector and laminating a protection layer on the other surface of the current collector to form an outermost electrode; allowing the outermost electrode to pass between a pair of press-rollers to perform a rolling process; and laminating the rolled outermost electrode to be disposed on an uppermost layer or a lowermost layer of the electrode assembly.
Opening claim text (preview).
The invention claimed is: 1. An electrode assembly, in which a plurality of electrodes are laminated with a separator interposed between adjacent electrodes, wherein an outermost electrode disposed at an outermost layer of the electrode assembly comprises: a current collector; a slurry applied on the current collector on one surface that faces the separator; and a protection layer adhered to the other surface of the current collector, wherein the protection layer is made of a polymer material having a molecular weight equal to or greater than 10,000, wherein, the electrode assembly is prepared by rolling the outermost electrode with a pair of press-rollers to form a rolled outermost electrode, wherein the protection layer is deformed to offset deformation of the slurry; and laminating the rolled outermost electrode on the outermost layer of the electrode assembly. 2. The electrode assembly of claim 1 , wherein the polymer material has electrical insulation. 3. The electrode assembly of claim 1 , wherein the outermost electrode is an electrode disposed at an uppermost layer of the electrode assembly, and wherein the protection layer is laminated to be disposed at the uppermost layer of the electrode assembly. 4. The electrode assembly of claim 1 , wherein the outermost electrode is an electrode disposed at a lowermost layer of the electrode assembly, and wherein the protection layer is laminated to be disposed at the lowermost layer of the electrode assembly. 5. A method for manufacturing an electrode assembly, in which a plurality of electrodes are laminated with a separator interposed between adjacent electrodes, the method comprising: applying a slurry to one surface of a current collector and laminating a protection layer on the other surface of the current collector to form an outermost electrode; rolling the outermost electrode with a pair of press-rollers to form a rolled outermost electrode, wherein the protection layer is deformed to offset deformation of the slurry; and laminating the rolled outermost electrode to be disposed on an uppermost layer or a lowermost layer of the electrode assembly, wherein the protection layer is made of a polymer material having a molecular weight equal to or greater than 10,000, and wherein, when the rolling is performed, the protection layer is deformed to offset deformation of the slurry. 6. The method of claim 5 , wherein, when the outermost electrode is disposed at the uppermost layer of the electrode assembly, the protection layer is disposed at the uppermost layer, and wherein, when the outermost electrode is disposed at the lowermost layer of the electrode assembly, the protection layer is disposed at the lowermost layer.
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