NEGATIVE ELECTRODE SHEET AND METHOD FOR PREPARING THE SAME, SECONDARY BATTERY, BATTERY MODULE, BATTERY PACK, AND ELECTRICAL APPARATUS
A negative electrode sheet may comprise a negative electrode current collector and a negative electrode film layer, at least one surface of the negative electrode current collector may be superposedly provided with two or more negative electrode film layers, adjacent negative electrode film layers may be bonded at a plurality of bonding points by a conductive adhesive having a raised structure, and there may be a gap between the adjacent negative electrode film layers at non-bonding points.
1 . A negative electrode sheet, comprising a negative electrode current collector and a negative electrode film layer, wherein at least one surface of the negative electrode current collector is superposedly provided with two or more of negative electrode film layers, the negative electrode film layers that are adjacent are bonded at a plurality of bonding points by a conductive adhesive having a raised structure, and there is a gap between the negative electrode film layers that are adjacent at non-bonding points.
2 . The negative electrode sheet according to claim 1 , wherein a height of the raised structure is not greater than a thickness of the negative electrode film layer.
3 . The negative electrode sheet according to claim 1 , wherein the plurality of the bonding points is uniformly provided on a surface of the negative electrode film layer.
4 . The negative electrode sheet according to claim 1 , wherein a spacing between the bonding points that are adjacent along a length direction of the negative electrode film layer is in a range of 30-50 mm; and/or a spacing between the bonding points that are adjacent along a width direction of the negative electrode film layer is in a range of 50-100 mm.
5 . The negative electrode sheet according to claim 1 , wherein a bonding surface of the conductive adhesive having the raised structure is at least one selected from half-round, round or elliptical;
optionally, a diameter or long diameter of the bonding surface of the conductive adhesive having the raised structure is not greater than 4 mm.
6 . The negative electrode sheet according to claim 1 , wherein a width of the gap between the negative electrode film layers that are adjacent is not greater than a thickness of the negative electrode film layer.
7 . The negative electrode sheet according to claim 1 , wherein two of the negative electrode film layers have an equal thickness.
8 . The negative electrode sheet according to claim 1 , wherein the conductive adhesive comprises an adhesive and a conductive material;
optionally, the conductive material comprises at least one selected from the group consisting of metal, graphite, and graphene.
9 . The negative electrode sheet according to claim 1 , further comprising metallic lithium filled within the gap between the negative electrode film layers that are adjacent;
optionally, the metallic lithium comprises at least one selected from the group consisting of a metallic lithium strip, a metallic lithium sheet and a metallic lithium powder.
10 . A method for preparing a negative electrode sheet, comprising the following steps:
(1) arranging a plurality of bonding points on a negative electrode film layer supported by a negative electrode current collector, and coating a conductive adhesive having a raised structure at the bonding points;
(2) bonding a negative electrode film layer supported by a substrate and the negative electrode film layer supported by the negative electrode current collector under an action of pressure by the conductive adhesive having the raised structure, and leaving a gap between two of the negative electrode film layers at non-bonding points, and peeling off the substrate to obtain the negative electrode sheet;
optionally, repeating steps (1) to (2).
11 . The method according to claim 10 , wherein a height of the raised structure is not greater than a thickness of the negative electrode film layer.
12 . The method according to claim 10 , wherein the plurality of the bonding points are uniformly provided on a surface of the negative electrode film layer.
13 . The method according to claim 10 , wherein a spacing between the bonding points that are adjacent along a length direction of the negative electrode film layer is in a range of 30-50 mm; and/or a spacing between the bonding points that are adjacent along a width direction of the negative electrode film layer is in a range of 50-100 mm.
14 . The method according to claim 10 , wherein a bonding surface of the conductive adhesive having the raised structure is at least one selected from half-round, round or elliptical;
optionally, a diameter or long diameter of the bonding surface of the conductive adhesive having the raised structure is not greater than 4 mm.
15 . The method according to claim 10 , wherein a width of the gap between two of the negative electrode film layers is not greater than a thickness of the negative electrode film layer.
16 . The negative electrode sheet according to claim 10 , wherein two of the negative electrode film layers have an equal thickness.
17 . The method according to claim 10 , wherein the conductive adhesive comprises an adhesive and a conductive material;
optionally, the conductive material comprises at least one selected from the group consisting of metal, graphite, and graphene.
18 . The method according to claim 10 , wherein prior to bonding, metallic lithium is provided at non-bonding points on the negative electrode film layer supported by the negative electrode current collector;
optionally, the metallic lithium comprises at least one selected from the group consisting of a metallic lithium strip, a metallic lithium sheet and a metallic lithium powder.
19 . The method according to claim 10 , wherein two of the negative electrode film layers are bonded under the pressure of 0.1-0.5 Mpa.
20 . A secondary battery comprising the negative electrode sheet according to claim 1 .
21 . A battery module comprising the secondary battery of claim 20 .
22 . A battery pack comprising the battery module of claim 21 .
23 . An electrical apparatus, comprising the battery pack of claim 22 .