NEGATIVE ELECTRODE PLATE AND SECONDARY BATTERY
The present application provides a negative electrode plate, comprising a current collector and a negative electrode film layer, wherein the negative electrode film layer comprises a negative electrode active material, a copolymer formed by acrylonitrile and acrylic acid components, and a polyol. Optionally, the negative electrode film layer further comprises a polyether. The cross-linked polymer and polyether described in the present application can reduce the rebound rate of the negative electrode plate during cycling, thereby improving the capacity retention rate of the battery.
1 . A negative electrode plate, comprising a current collector and a negative electrode film layer, wherein the negative electrode film layer comprises a negative electrode active material and the following components:
(A) a copolymer formed from the following components:
(a) acrylonitrile;
(b) carboxylic acid containing 3 to 6 carbon atoms and at least one double bond; and
(c) optionally other components, which are selected from one or more of methacrylic acid, acrylate, hydroxyethyl acrylate, vinyl acetate and dimethyl diallyl ammonium chloride; and
(B) a polyol.
2 . The negative electrode plate according to claim 1 , characterized in that the mass content of the polyol is in a range of 0.1-30% based on the total mass of the components (A) and (B).
3 . The negative electrode plate according to claim 1 , characterized in that the weight-average molecular weight of the component (A) is in a range of 300,000-1,200,000.
4 . The negative electrode plate according to claim 1 , characterized in that the negative electrode film layer further comprises a polyether.
5 . The negative electrode plate according to claim 4 , characterized in that the weight-average molecular weight of the polyether is in a range of 100-500,000 and the PDI thereof is in a range of 2-5.
6 . The negative electrode plate according to claim 4 , characterized in that the mass ratio of the polyether to a cross-linked polymer is in a range of 0.015-0.6.
7 . The negative electrode plate according to claim 1 , characterized in that in the component (A), the mass percentage of the component (a) of acrylonitrile is 20-60%, the mass percentage of the component (b) of acrylic acid is 30-70%, and the mass percentage of the component (c) is 0-10%, based on the total mass of the components (a), (b) and (c).
8 . The negative electrode plate according to claim 4 , characterized in that the mass content of the polyether is in a range of 0.05-1% based on the total mass of the negative electrode film layer.
9 . The negative electrode plate according to claim 1 , characterized in that the mass content of the cross-linked polymer is in a range of 0.5-3% based on the total mass of the negative electrode film layer.
10 . A secondary battery, comprising a negative electrode plate of claim 1 .
11 . A method for preparing a secondary battery comprising a negative electrode plate of claim 1 , the method comprising the steps of:
(1) mixing components (A) and (B) to obtain a cross-linked mixture; and
(2) preparing a negative electrode plate, which involves uniformly mixing a negative electrode active material, an optional conductive agent, an optional thickening agent and the cross-linked mixture obtained in step (1) to obtain a negative electrode slurry, then coating same onto a negative electrode current collector, followed by drying, cold pressing and slitting to obtain the negative electrode plate; and
the method further comprising the steps of preparing or obtaining a positive electrode plate, preparing or obtaining an electrolyte solution, and preparing or obtaining a separator, and
assembling the negative electrode plate, the positive electrode plate, the electrolyte solution, and the separator obtained in the above steps, and heating same under vacuum at 100-130° C. for 5-15 h to achieve the cross-linking of at least a part of the components (A) and (B) in the negative electrode film layer.