IP Library Patent Application 18415696
Patent Application
App. No. 18/415,696

BINDER AND PREPARATION METHOD AND APPLICATION THEREOF

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Quick Facts
Patent No.
US None
App. No.
18/415,696
Abstract

The present application provides a binder, including a polyvinylidene fluoride having a weight average molar mass of 1.5 million to 5.0 million; optionally, the polyvinylidene fluoride has a weight average molar mass of 1.8 million to 3.2 million.

Claims (29)

1 . A binder, comprising a polyvinylidene fluoride having a weight average molar mass of 1.5 million to 5.0 million; optionally, the polyvinylidene fluoride has a weight average molar mass of 1.8 million to 3.2 million.

2 . The binder according to claim 1 , wherein the polyvinylidene fluoride has a polydispersity index of 1.5 to 2.5; optionally, the polyvinylidene fluoride has a polydispersity index of 2 to 2.3.

3 . The binder according to claim 1 , wherein the polyvinylidene fluoride has a number average molar mass of 0.6 million to 3 million; optionally, the polyvinylidene fluoride has a number average molar mass of 1 million to 2 million.

4 . The binder according to claim 1 , wherein the polyvinylidene fluoride has a Dv50 particle size of 50 μm-150 μm; optionally, the polyvinylidene fluoride has a Dv50 particle size of 60 μm-100 μm.

5 . The binder according to claim 1 , wherein the polyvinylidene fluoride has a crystallinity of 38%-48%; optionally, the polyvinylidene fluoride has a crystallinity of 40%-45%.

6 . The binder according to claim 1 , wherein a viscosity of a binder solution made from the polyvinylidene fluoride dissolved in N-methyl pyrrolidone is 3500 mPas-5000 mPas, and a mass percentage content of the binder in the binder solution is 3%-5%.

7 . A preparation method of the binder according to claim 1 , comprising steps of:

conducting a polymerization reaction of vinylidene fluoride monomers for 6 hrs-10 hrs under a non-reactive gas atmosphere, a reaction pressure of 6 MPa-8 MPa, and a reaction temperature of 45° C.-60° C.; and

adding a chain transfer agent, and when a pressure in reaction system was reduced to 2 MPa-2.5 MPa, terminating the reaction and carrying out a solid-liquid separation to retain a solid phase.

8 . The preparation method according to claim 7 , wherein the chain transfer agent comprises one or more of cyclohexane, isopropanol, methanol, and acetone.

9 . The preparation method according to claim 7 , wherein an amount of the chain transfer agent used is 1.5%-3% of a mass of the vinylidene fluoride monomers.

10 . The preparation method according to claim 7 , wherein the polymerization reaction comprises steps of:

adding a solvent and a dispersant to a container, evacuating and filling the container with a non-reactive gas;

adding an initiator and a pH adjuster to the container, adjusting pH to 6.5-7, and then adding the vinylidene fluoride monomers so that a pressure in the container reaches 6 MPa-8 MPa; and

heating, after stirring for 30 min-60 min, to 45° C.-60° C. for polymerization reaction.

11 . The preparation method according to claim 10 , wherein an amount of the solvent used is 2-8 times a mass of the vinylidene fluoride monomers.

12 . The preparation method according to claim 10 , wherein the dispersant comprises one or more of cellulose ether and polyvinyl alcohol; optionally, the cellulose ether comprises one or more of methyl cellulose ether and carboxyethyl cellulose ether.

13 . The preparation method according to claim 10 , wherein an amount of the dispersant used is 0.1%-0.3% of a mass of the vinylidene fluoride monomers.

14 . The preparation method according to claim 10 , wherein the initiator is an organic peroxide; optionally, the organic peroxide comprises one or more of tert-pentyl peroxypivalate, tert-amyl peroxypivalate, 2-ethyl peroxydicarbonate, diisopropyl peroxydicarbonate, and tert-butyl peroxypivalate.

15 . The preparation method according to claim 10 , wherein an amount of the initiator used is 0.15%-1% of a mass of the vinylidene fluoride monomers.

16 . The preparation method according to claim 10 , wherein the pH adjuster comprises one or more of potassium carbonate, potassium bicarbonate, sodium carbonate, sodium bicarbonate, and ammonia water.

17 . The preparation method according to claim 10 , wherein an amount of the pH adjuster used is 0.05%-0.2% of a mass of the vinylidene fluoride monomers.

18 . Application of the vinylidene fluoride defined in claim 1 in the preparation of a binder.

19 . A secondary battery, comprising a cathode plate, a separator, and an anode plate, the separator is disposed between the cathode plate and the anode plate;

wherein the cathode plate comprises a cathode current collector and a cathode active material layer disposed on at least one surface of the cathode current collector, the cathode active material layer comprises the binder according to claim 1 .

20 . The secondary battery according to claim 19 , wherein a mass percentage content of the binder in the cathode active material layer is 0.6%-1.2%; optionally, a mass percentage content of the binder is 0.6%-0.8%.

21 . A battery module, comprising the secondary battery according to claim 19 .

22 . A battery pack, comprising the battery module according to claim 21 .

23 . An electric device, comprising one or more of the secondary battery according to claim 19 .

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 6, 2024
From: CONTEMPORARY AMPEREX TECHNOLOGY CO., LIMITED
To: CONTEMPORARY AMPEREX TECHNOLOGY (HONG KONG) LIMITED
Reel/Frame 068338/0402 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 18, 2024
From: DUAN, LIANWEI; LIU, HUIHUI
To: CONTEMPORARY AMPEREX TECHNOLOGY CO., LIMITED
Reel/Frame 066156/0986 →