ELECTRODE BODY, RECHARGEABLE BATTERY, AND METHOD FOR MANUFACTURING ELECTRODE BODY
An electrode body includes a substrate serving as a collector, a composite layer formed by applying a composite paste including an electrode active material to the substrate, and an insulation layer formed by applying an insulation paste including an insulative material to the substrate adjacent to the composite layer. The composite layer extends above and overlaps the insulation layer that covers a surface of the substrate in an interface region of the composite layer and the insulation layer. A mixed layer is formed between the insulation layer and the composite layer when the composite paste and the insulation paste mix in an overlapping range of the insulation layer and the composite layer. The mixed layer is formed in a range where the insulation layer covers the surface of the substrate.
1 . An electrode body, comprising:
a substrate serving as a collector;
a composite layer formed by applying a composite paste including an electrode active material to the substrate;
an insulation layer formed by applying an insulation paste including an insulative material to the substrate adjacent to the composite layer, wherein the composite layer extends above and overlaps the insulation layer that covers a surface of the substrate in an interface region of the composite layer and the insulation layer; and
a mixed layer formed between the insulation layer and the composite layer when the composite paste and the insulation paste mix in an overlapping range of the insulation layer and the composite layer,
wherein the mixed layer is formed in a range where the insulation layer covers the surface of the substrate.
2 . The electrode body according to claim 1 , wherein the mixed layer is formed between the insulation layer and a distal end portion of the composite layer extending into the interface region.
3 . The electrode body according to claim 1 , wherein the mixed layer extends to a position above the insulation layer where the composite layer does not exist.
4 . The body electrode according to claim 1 , wherein:
the composite layer extending in the interface region includes a composite slope having a thickness that gradually decreases toward an end of the substrate where the insulation layer is applied;
the insulation layer covers the surface of the substrate in a range where the composite slope portion is formed; and
the insulation layer does not extend beyond a range where the composite slope is formed into an area below the composite layer.
5 . The electrode body according to claim 1 , wherein the insulation layer has a higher binder component content ratio than the composite layer.
6 . The electrode body according to claim 1 , wherein the composite layer is a positive electrode active material layer.
7 . A rechargeable battery, comprising:
the body electrode according to claim 1 .
8 . A method for manufacturing an electrode including a substrate serving as a collector, a composite layer formed by applying a composite paste including an electrode active material to the substrate, and an insulation layer formed by applying an insulation paste including an insulative material to the substrate adjacent to the composite layer, the method comprising:
simultaneously applying, to the substrate, the composite paste and the insulation paste that are adjusted so that a mixed layer is formed between the insulation layer and the composite layer by mixing the composite paste and the insulation paste in an overlapping range of the insulation layer and the composition layer where the composition layer overlaps an upper side of the insulation layer that covers a surface of the substrate in an interface region of the composite layer and the insulation layer and so that the mixed layer is formed in a range where the insulation layer covers the surface of the substrate.
9 . The method according to claim 8 , wherein the insulation paste has a higher flowability than the composite paste when applied to the substrate.
10 . The method according to claim 8 , wherein the insulation paste has a lower viscosity in a low shear rate region than the composite paste.
11 . The method according to claim 8 , wherein the insulative material included in the insulation paste has a smaller particle diameter than the electrode active material included in the composite paste.
12 . The method according to claim 8 , wherein the composite paste applied per unit area to the substrate is greater in amount than the insulation paste.
13 . The method according to claim 8 , wherein the insulation layer has a higher binder content ratio than the composite paste.