Preparation method of anode slurry and battery
View Patent ↗A preparation method of a cathode slurry and a battery are provided. The preparation method includes: S1, mixing materials containing a plasticizer and an additive to form a premixed slurry A; and S2, mixing a styrene-butadiene rubber emulsion with the premixed slurry A. The plasticizer includes a first functional group including at least one of a hydroxyl group, a carbonate group, and a ketone group. The additive includes a second functional group including at least one of a carboxyl group, a nitrile group, and an amide group.
1. A preparation method of an anode slurry, comprising:
S12, mixing materials containing a plasticizer, an additive, and a solvent to form a premixed slurry B;
S13, mixing the materials containing the premixed slurry B, an anode active material, and a conductive agent to form a premixed slurry A; and
S2, mixing a styrene-butadiene rubber emulsion with the premixed slurry A;
wherein the plasticizer comprises a first functional group, the first functional group comprises at least one of a hydroxyl group, a carbonate group, and a ketone group, the additive comprises a second functional group, and the second functional group comprises at least one of a carboxyl group, a nitrile group, and an amide group.
2. The preparation method according to claim 1 , wherein a mole ratio of the first functional group to the second functional group is not greater than 1.
3. The preparation method according to claim 1 , wherein the additive is selected from one or more of sodium carboxymethyl cellulose, polyacrylic acid, polyimide, polyamide, polyetherimide, and polyacrylonitrile.
4. The preparation method according to claim 1 , wherein the plasticizer is selected from one or more of 1,3-butanediol, dodecyl alcohol ester, triethyl citrate, tributyl citrate, ethylene carbonate, and propylene carbonate.
5. The preparation method according to claim 1 , wherein the anode active material comprises one or more of natural graphite, artificial graphite, silicon carbon, silicon oxide, and lithium titanate.