IP Library Patent Application 18416554
Patent Application
App. No. 18/416,554

ANODE PLATE AND PREPARATION METHOD THEREOF, SECONDARY BATTERY, BATTERY MODULE, BATTERY PACK AND ELECTRIC DEVICE

Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US None
App. No.
18/416,554
Filed
Jan 18, 2024
Art Unit
1727
USPC
429/215
Abstract

An anode plate includes a current collector and an anode active material layer. The anode active material layer is disposed on at least one surface of the current collector. The anode active material layer includes a fluoropolymer and a carbon nanotube; the fluoropolymer is dispersed in the anode active material layer; and the carbon nanotube is wrapped around the fluoropolymer and an anode active material in the anode active material layer.

Claims (36)

1 . An anode plate, comprising:

a current collector; and

an anode active material layer disposed on at least one surface of the current collector, the anode active material layer comprising a fluoropolymer and a carbon nanotube;

wherein the fluoropolymer is dispersed in the anode active material layer, and the carbon nanotube is wrapped around the fluoropolymer and an anode active material in the anode active material layer.

2 . The anode plate according to claim 1 , wherein the fluoropolymer comprises at least one of a homopolymer of a monomer represented by Formula I and a copolymer of a monomer represented by Formula I and a monomer represented by Formula II:

wherein:

R 1 to R 7 are each independently selected from —H, —F, —Cl, —COOH, —COOR, —CHO, —COR, —CONH 2 , —CONHR, —CN, —CCl 3 , —CF 3 , —NO 2 , —OH, —OR, —R and —ROR; and

R is selected from C 1 -C 18 straight chain or branched chain alkyl.

3 . The anode plate according to claim 1 , wherein the fluoropolymer is at least one selected from polyvinylidene fluoride, polytetrafluoroethylene, hexafluoropropylene, a vinylidene fluoride-tetrafluoroethylene copolymer, a vinylidene fluoride-hexafluoropropylene copolymer, a vinylidene fluoride-tetrafluoroethylene-propylene terpolymer, a vinylidene fluoride-hexafluoropropylene-tetrafluoroethylene terpolymer, a tetrafluoroethylene-hexafluoropropylene copolymer and a fluoroacrylate resin.

4 . The anode plate according to claim 1 , wherein a relative molecular mass of the fluoropolymer is 0.1 million-3 million.

5 . The anode plate according to claim 1 , wherein the fluoropolymer is a spherical particle.

6 . The anode plate according to claim 5 , wherein a diameter of the spherical particle is 50 nm-500 nm.

7 . The anode plate according to claim 1 , wherein the carbon nanotube is at least one selected from a single-walled carbon nanotube and a multi-walled carbon nanotube.

8 . The anode plate according to claim 1 , wherein a diameter of the carbon nanotube is 0.5 nm-20 nm.

9 . The anode plate according to claim 1 , wherein an aspect ratio of the carbon nanotube is 50-20,000.

10 . The anode plate according to claim 1 , wherein in the anode active material layer, a mass percentage of the fluoropolymer is 0.01%-10%.

11 . The anode plate according to claim 1 , wherein in the anode active material layer, a mass percentage of the carbon nanotube is 0.01%-5%.

12 . The anode plate according to claim 1 , wherein a mass percentage of the anode active material in the anode active material layer is 86%-97%.

13 . The anode plate according to claim 1 , wherein the anode active material layer further comprises a conductive agent.

14 . The anode plate according to claim 1 , wherein the anode active material layer further comprises a binder.

15 . A preparation method for an anode plate, comprising:

preparing an anode slurry, which contains a fluoropolymer and a carbon nanotube; and

coating the anode slurry on at least one surface of a current collector, drying, and cold pressing to obtain an anode plate;

wherein:

the anode plate comprises the current collector and an anode active material layer disposed on the at least one surface of the current collector;

the anode active material layer comprises a fluoropolymer and a carbon nanotube;

the fluoropolymer is dispersed in the anode active material layer; and

the carbon nanotube is wrapped around the fluoropolymer and an anode active material in the anode active material layer.

16 . The preparation method according to claim 15 , wherein the fluoropolymer is prepared by emulsion polymerization.

17 . A secondary battery, comprising an anode plate comprising:

a current collector; and

an anode active material layer disposed on at least one surface of the current collector, the anode active material layer comprising a fluoropolymer and a carbon nanotube;

wherein the fluoropolymer is dispersed in the anode active material layer, and the carbon nanotube is wrapped around the fluoropolymer and an anode active material in the anode active material layer.

18 . A battery module, comprising the secondary battery according to claim 17 .

19 . A battery pack, comprising the secondary battery according to claim 17 .

20 . An electric device, comprising the secondary battery according to claim 17 .

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 19, 2024
From: WU, QIFAN; ZHANG, MING; ZHOU, YI
To: CONTEMPORARY AMPEREX TECHNOLOGY CO., LIMITED
Reel/Frame 066186/0228 →