IP Library Patent Application 18636308
Patent Application
App. No. 18/636,308

COMPOSITE CURRENT COLLECTOR FOR POSITIVE ELECTRODE, POSITIVE ELECTRODE PLATE, SECONDARY BATTERY, AND ELECTRIC APPARATUS

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Patent No.
US None
App. No.
18/636,308
Abstract

This application provides a composite current collector for positive electrode including a support layer and a conductive layer disposed on at least one side of the support layer. The support layer is an organic support layer. The support layer has a thickness d1, a tensile strength at break T1, a yield strength Q1, and an elastic modulus G1; the conductive layer has a total thickness d2, a tensile strength at break T2, and an elastic modulus G2; and the composite current collector for positive electrode satisfies the following condition: (d1×T1−(d2×T2)×(1−α)−d1×Q1×α)≥800 Pa·m, where α=G1/(G1+G2).

Claims (39)

1 . A composite current collector for positive electrode comprising a support layer and a conductive layer disposed on at least one side of the support layer, the support layer being an organic support layer; wherein

the support layer has a thickness denoted as d1, a tensile strength at break denoted as T1, a yield strength denoted as Q1, and an elastic modulus denoted as G1;

the conductive layer has a total thickness denoted as d2, a tensile strength at break denoted as T2, and an elastic modulus denoted as G2; and

the composite current collector for positive electrode satisfies the following condition: (d1×T1−(d2×T2)×(1−α)−d1×Q1×α)≥800 Pa·m, wherein α=G1/(G1+G2).

2 . The composite current collector for positive electrode according to claim 1 , wherein the thickness d1 of the support layer is 4-15 μm;

optionally, the thickness d1 of the support layer is 4-12 μm; and

further optionally, the thickness d1 of the support layer is 4-6 μm.

3 . The composite current collector for positive electrode according to claim 1 , wherein the tensile strength at break T1 of the support layer is greater than or equal to 200 MPa; and

optionally, the tensile strength at break T1 of the support layer is greater than or equal to 300 MPa.

4 . The composite current collector for positive electrode according to claim 1 , wherein the yield strength Q1 of the support layer is greater than or equal to 90 MPa; and

optionally, the yield strength Q1 of the support layer is greater than or equal to 150 MPa.

5 . The composite current collector for positive electrode according to claim 1 , wherein the composite current collector for positive electrode satisfies any one or any plurality of the following features:

the total thickness d2 of the conductive layer is 0.6-3 μm; optionally, the total thickness d2 of the conductive layer is 1-3 μm; and further optionally, the total thickness d2 of the conductive layer is 1.4-2.4 μm;

the unilateral thickness d2 s of the conductive layer is 0.3-1.5 μm; optionally, the unilateral thickness d2 s of the conductive layer is 0.5-1.5 μm; and further optionally, the unilateral thickness d2 s of the conductive layer is 0.7-1.2 μm; and

a thickness D a of the composite current collector for positive electrode is 3-17 μm; optionally, the thickness D a of the composite current collector for positive electrode is 3-14 μm; and further optionally, the thickness D a of the composite current collector for positive electrode is 3.4-8.4 μm.

6 . The composite current collector for positive electrode according to claim 1 , wherein the tensile strength at break T2 of the conductive layer is greater than or equal to 150 MPa; and

optionally, the tensile strength at break T2 of the conductive layer is greater than or equal to 200 MPa.

7 . The composite current collector for positive electrode according to claim 1 , wherein the composite current collector for positive electrode satisfies any one or any plurality of the following features:

the elastic modulus G1 of the support layer is greater than or equal to 3 GPa; and optionally, the elastic modulus G1 of the support layer is greater than or equal to 4 GPa;

the elastic modulus G2 of the conductive layer is 25-40 GPa; and optionally, the elastic modulus G2 of the conductive layer is 25-35 GPa; and

α is 0.024-0.43; optionally, α is 0.095-0.300; and further optionally, α is 0.105-0.250.

8 . The composite current collector for positive electrode according to claim 1 , wherein (d1×T1−(d2×T2)×(1−α)−d1×Q1×α)≥1000 Pa·m; and

optionally, (d1×T1−(d2×T2)×(1−α)−d1×Q1×α)≥1650 Pa·m.

9 . The composite current collector for positive electrode according to claim 1 , wherein the support layer is made of a polymer-based material or a polymer-based composite material; and

optionally, the polymer component in the support layer comprises one or more of polyimide, polyamide, polyethylene terephthalate, polybutylene terephthalate, polyethylene naphthalate, polycarbonate, polyethylene, polypropylene, polypropylene ethylene, acrylonitrile-butadiene-styrene copolymer, polyvinyl alcohol, polystyrene, polyvinyl chloride, polyvinylidene fluoride, polytetrafluoroethylene, sodium polystyrene sulfonate, polyacetylene, silicone rubber, polyoxymethylene, polyphenylene oxide, polyphenylene sulfide, polyethylene glycol, polysulfur nitride polymer materials, polyphenyl, polypyrrole, polyaniline, polythiophene, polypyridine, cellulose, starch, protein, epoxy resins, phenolic resins, derivatives of the foregoing materials, cross-linked products of the foregoing materials, and copolymers of the foregoing materials.

10 . The composite current collector for positive electrode according to claim 1 , wherein the polymer component in the support layer comprises a polyimide, the polyimide comprising either or both of a homobenzene polyimide and a biphenyl polyimide;

optionally, the polymer component in the support layer comprises a biphenyl polyimide;

further optionally, the support layer comprises a biphenyl polyimide with a mass proportion greater than or equal to 50%;

furthermore optionally, the support layer comprises a biphenyl polyimide with a mass proportion greater than or equal to 80%; and

furthermore optionally, the support layer is made of biphenyl polyimide.

11 . The composite current collector for positive electrode according to claim 1 , wherein the conductive layer comprises a metal material, and optionally the metal material comprises one or more of aluminum and an aluminum alloy.

12 . A positive electrode plate comprising the composite current collector for positive electrode according to claim 1 .

13 . A secondary battery comprising the composite current collector for positive electrode according to claim 1 .

14 . A secondary battery comprising the positive electrode plate according to claim 12 .

15 . An electric apparatus comprising the composite current collector for positive electrode according to claim 1 .

16 . An electric apparatus comprising the positive electrode plate according to claim 12 .

17 . An electric apparatus comprising the secondary battery according to claim 13 .

18 . A preparation method of the composite current collector for positive electrode according to claim 1 , characterized by comprising the following step: forming the conductive layer on at least one side of the support layer so as to produce the composite current collector for positive electrode.

19 . A preparation method of positive electrode plate, characterized by comprising the following steps: applying a positive electrode slurry on at least one side surface of the composite current collector for positive electrode according to claim 1 , followed by drying and cold pressing, to produce the positive electrode plate.

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 Apr 17, 2024
From: LIU, XIN; LIU, XIANGHUI; HUANG, QISEN; LI, MINGLING; LI, CHENG
To: CONTEMPORARY AMPEREX TECHNOLOGY CO., LIMITED
Reel/Frame 067121/0759 →