IP Library Patent Application 18479949
Patent Application
App. No. 18/479,949

MODIFIED BINDER, BINDER COMPOSITION, PREPARATION METHOD, ANODE SLURRY, ANODE PLATE, SECONDARY BATTERY, BATTERY MODULE, BATTERY PACK AND ELECTRIC DEVICE

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Patent No.
US None
App. No.
18/479,949
Abstract

A modified binder includes a conductive carbon nanotube and a first grafting agent located on the conductive carbon nanotube. The first grafting agent includes a copolymer of acrylic-based monomer unit-acrylamide-based monomer unit and/or a copolymer of acrylic-based monomer unit-acrylonitrile-based monomer unit-acrylamide-based monomer unit.

Claims (38)

1 . A modified binder, comprising:

a conductive carbon nanotube; and

a first grafting agent located on the conductive carbon nanotube, the first grafting agent comprising a copolymer of acrylic-based monomer unit-acrylamide-based monomer unit and/or a copolymer of acrylic-based monomer unit-acrylonitrile-based monomer unit-acrylamide-based monomer unit.

2 . The modified binder according to claim 1 , wherein:

a monomer corresponding to the acrylic-based monomer unit comprises acrylic acid and a C 1 -C 6 alkyl-substituted acrylic-based monomer;

a monomer corresponding to the acrylonitrile-based monomer unit comprises acrylonitrile, a C 1 -C 6 alkyl-substituted acrylonitrile-based monomer; and

a monomer corresponding to the acrylamide-based monomer unit comprises acrylamide, a C 1 -C 6 alkyl-substituted acrylamide-based monomer.

3 . The modified binder according to claim 1 , wherein, at 25° C., an aqueous solution of the modified binder with a solid content of 0.8%-1.4% has a viscosity of 20,000 mPa·s-40,000 mPa·s.

4 . The modified binder according to claim 1 , wherein the first grafting agent has a weight average molar mass of 5,000 Da to 100,000 Da.

5 . The modified binder according to claim 1 , wherein the conductive carbon nanotube comprises a single-walled carbon nanotube and a multi-walled carbon nanotube.

6 . The modified binder according to claim 1 , wherein the conductive carbon nanotube has a length of 1 μm-5 μm.

7 . A binder composition, comprising:

the modified binder according to claim 1 ; and

a second binder;

wherein at 25° C., the second binder with a solid content of 3% has a viscosity of 2,000 mPa·s-7,000 mPa·s.

8 . The binder composition according to claim 7 , wherein, the second binder comprises a copolymer of acrylic-based monomer unit-acrylonitrile-based monomer unit and/or a copolymer of acrylic-based monomer unit-acrylonitrile-based monomer unit-acrylamide-based monomer unit.

9 . The binder composition according to claim 8 , wherein:

a monomer corresponding to the acrylic-based monomer unit comprises acrylic acid and a C 1 -C 6 alkyl-substituted acrylic-based monomer;

a monomer corresponding to the acrylonitrile-based monomer unit comprises acrylonitrile, a C 1 -C 6 alkyl-substituted acrylonitrile-based monomer; and

a monomer corresponding to the acrylamide-based monomer unit comprises acrylamide, a C 1 -C 6 alkyl-substituted acrylamide-based monomer.

10 . The binder composition according to claim 7 , wherein the second binder has a polar group.

11 . The binder composition according to claim 7 , wherein the second binder has a weight average molar mass of 50,000 Da-2,000,000 Da.

12 . The binder composition according to claim 7 , wherein a mass ratio of the modified binder to the second binder is 1:(8-12).

13 . The binder composition according to claim 7 , wherein at 25° C., an aqueous solution of the binder composition with a solid content of 3% has a viscosity of 15,000 mPa·s-mPa·s.

14 . A preparation method for the binder composition according to claim 7 , comprising:

preparing the modified binder by reacting an acrylic-based monomer, an acrylamide-based monomer and the conductive carbon nanotube in a poly(vinyl alcohol) cellulose dispersion containing a persulfate to form the modified binder;

preparing the second binder using an acrylic-based monomer and an acrylonitrile-based monomer; and

mixing the modified binder with the second binder.

15 . The preparation method according to claim 14 , wherein during preparation of the second binder, the acrylic-based monomer accounts for 50%-80% by mass of total monomers, the acrylonitrile-based monomer accounts for 20%-40% by mass of the total monomers, and the acrylamide-based monomer accounts for 0%-20% by mass of the total monomers.

16 . A preparation method for the modified binder according to claim 1 , comprising:

reacting an acrylic-based monomer, an acrylamide-based monomer and the conductive carbon nanotube in a poly(vinyl alcohol) cellulose dispersion containing a persulfate to form the modified binder.

17 . The preparation method according to claim 16 , wherein a mass ratio between the acrylic-based monomer, the acrylonitrile-based monomer, the acrylamide-based monomer and the conductive carbon nanotube is (0.2-0.8):(0-0.18):(0.06-0.18):(0.2-0.6).

18 . An anode slurry, comprising the modified binder according to claim 1 .

19 . An anode plate, comprising:

an anode current collector; and

an anode active material layer located on at least one surface of the anode current collector;

wherein, the anode active material layer comprises the modified binder according to claim 1 .

20 . The anode plate according to claim 19 , wherein the anode active material layer further comprises a first anode active material and a second anode active material, and a mass ratio between the first anode active material, the second anode active material and the binder composition is (80-95):(1-20):(0.5-2).

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 Oct 3, 2023
From: ZHANG, WENMENG; LIU, HUIHUI; WANG, XINGHUI; CHEN, SHUHUA
To: CONTEMPORARY AMPEREX TECHNOLOGY CO., LIMITED
Reel/Frame 065105/0214 →