IP Library Patent Application 18354610
Patent Application
App. No. 18/354,610

POSITIVE ELECTRODE PLATE, SECONDARY BATTERY AND POWER CONSUMING DEVICE

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Patent No.
US None
App. No.
18/354,610
Abstract

A positive electrode plate includes a positive electrode current collector, a positive electrode film layer provided on at least one surface of the positive electrode current collector, and a conductive undercoat layer between the positive electrode current collector and the positive electrode film layer. The positive electrode film layer includes a positive electrode active material having a chemical formula of Li a A x Mn 1-y B y P 1-z C z O 4-n D n , and the conductive primer layer includes a first polymer, a first water-based binder and a first conductive agent.

Claims (58)

1 . A positive electrode plate, comprising a positive electrode current collector, a positive electrode film layer provided on at least one surface of the positive electrode current collector, and a conductive undercoat layer between the positive electrode current collector and the positive electrode film layer, wherein:

the positive electrode film layer comprises a positive electrode active material having a chemical formula of Li a A x Mn 1-y B y P 1-z C z O 4-n D n , wherein A comprises one or more elements selected from Zn, Al, Na, K, Mg, Nb, Mo, and W, B comprises one or more elements selected from Ti, V, Zr, Fe, Ni, Mg, Co, Ga, Sn, Sb, Nb, and Ge, C comprises one or more elements selected from B (boron), S, Si, and N, D comprises one or more elements selected from S, F, Cl, and Br, a is selected from a range of 0.9 to 1.1, x is selected from a range of 0.001 to 0.1, y is selected from a range of 0.001 to 0.5, z is selected from a range of 0.001 to 0.1, n is selected from a range of 0.001 to 0.1, and the positive electrode active material is electrically neutral; and

the conductive undercoat layer includes a first polymer, a first water-based binder, and a first conductive agent, wherein the first polymer comprises

a first monomeric unit represented by formula 1;

a second monomeric unit comprising at least one selected from a group consisting of a monomeric unit represented by formula 2 and a monomeric unit represented by formula 3;

a third monomeric unit comprising at least one selected from a group consisting of a monomeric unit represented by formula 4 and a monomeric unit represented by formula 5; and

a fourth monomeric unit represented by formula 6, in which R 1 , R 2 , and R 3 each independently represent H, a carboxyl, an ester group, and groups of substituted or unsubstituted C1-C10 alkyl, C1-C10 alkoxy, C2-C10 alkenyl, and C6-C10 aryl, R 4 represents H, and groups of substituted or unsubstituted: C1-C10 alkyl, C1-C10 alkoxy, C2-C10 alkenyl, and C6-C10 aryl;

2 . The positive electrode plate according to claim 1 , wherein based on a total mass of the first polymer:

a mass percentage content M1 of the first monomeric unit is 10%-55%; and/or

a mass percentage content M2 of the second monomeric unit is 40%-80; and/or

a mass percentage content M3 of the third monomeric unit is 0%-10%; and/or

a mass percentage content M4 of the fourth monomeric unit is 0%-10%.

3 . The positive electrode plate according to claim 2 , wherein M3/(M2+M3) is 0%-5%.

4 . The positive electrode plate according to claim 1 , wherein:

the first polymer comprises one or more selected from hydrogenated nitrile rubbers, and hydrogenated carboxylated nitrile rubbers; and/or

the first polymer has a weight-average molecular weight of 50,000-1,500,000.

5 . The positive electrode plate according to claim 1 , wherein:

the first water-based binder comprises one or more selected from a water-based polyacrylic resin and a derivative thereof, a water-based amino-modified polypropylene resin and a derivative thereof, a polyvinyl alcohol and a derivative thereof; and/or

the first water-based binder has a weight-average molecular weight of 200,000-1,500,000.

6 . The positive electrode plate according to claim 1 , wherein the first conductive agent comprises one or more selected from superconductive carbon, conductive graphite, acetylene black, carbon black, Ketjen black, carbon dots, carbon nanotubes, graphene, and carbon nanofibers.

7 . The positive electrode plate according to claim 1 , wherein based on a total mass of the conductive undercoat layer:

a mass percentage content X1 of the first polymer is 5%-20%; and/or

a mass percentage content X2 of the first water-based binder is 30%-80%; and/or

a mass percentage content X3 of the first conductive agent is 10%-50%.

8 . The positive electrode plate according to claim 1 , wherein a thickness of the conductive undercoat layer is 1-20 μm.

9 . The positive electrode plate according to claim 1 , wherein the positive electrode film layer further comprises one or more selected from an infiltration agent and a dispersant.

10 . The positive electrode plate according to claim 9 , wherein:

the infiltration agent has a surface tension of 20 mN/m-40 mN/m; and/or

the infiltration agent comprises at least one of functional groups of: —CN, —NH 2 , —NH—, —N—, —OH, —COO—, —C(═O)—O—C(═O)—.

11 . The positive electrode plate according to claim 9 , wherein:

the infiltration agent comprises one or more selected from small molecule organic solvents and low molecular weight polymers.

12 . The positive electrode plate according to claim 9 , wherein the dispersant comprises a second polymer, and the second polymer comprises:

a fifth monomeric unit represented by formula 7;

a sixth monomeric unit comprising at least one selected from a group consisting of a monomeric unit represented by formula 8 and a monomeric unit represented by formula 9; and

a seventh monomeric unit comprising at least one selected from a group consisting of a monomeric unit represented by formula 10 and a monomeric unit represented by formula 11;

13 . The positive electrode plate according to claim 12 , wherein based on a total mass of the second polymer:

a mass percentage content M5 of the fifth monomeric unit is 10%-55%; and/or

a mass percentage content M6 of the sixth monomeric unit is 40%-80%; and/or

a mass percentage content M7 of the seventh monomeric unit is 0%-10%.

14 . The positive electrode plate according to claim 13 , wherein M7/(M6+M7) is 0%-5%.

15 . The positive electrode plate according to claim 12 , wherein:

the second polymer comprises a hydrogenated nitrile rubber; and/or

the second polymer has a weight-average molecular weight of 50,000-500,000.

16 . The positive electrode plate according to claim 13 , wherein in the positive electrode plate, a mass ratio of the first polymer to the second polymer is 1.5-5.

17 . The positive electrode plate according to claim 9 , wherein based on a total mass of the positive electrode film layer:

a mass percentage content Y1 of the dispersant is 0.05%-1%; and/or

a mass percentage content Y2 of the infiltration agent is 0.05%-2%.

18 . The positive electrode plate according to claim 17 , wherein Y1/Y2 is 0.05-20.

19 . The positive electrode plate according to claim 1 , wherein:

A is any one of Zn, Al, Na, K, Mg, Nb, Mo, and W;

B is at least two of Ti, V, Zr, Fe, Ni, Mg, Co, Ga, Sn, Sb, Nb, and Ge;

C is any one of B (boron), S, Si, and N; and

D is any one of S, F, Cl, and Br.

20 . The positive electrode plate according to claim 1 , wherein:

x is selected from a range of 0.001 to 0.005; and/or

y is selected from a range of 0.01 to 0.5; and/or

z is selected from a range of 0.001 to 0.005; and/or

n is selected from a range of 0.001 to 0.005.

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 Jul 18, 2023
From: FENG, LINGYUN; LIU, HUIHUI; FAN, YANHUANG; FENG, WEI
To: CONTEMPORARY AMPEREX TECHNOLOGY CO., LIMITED
Reel/Frame 064305/0702 →