IP Library Patent Application 18622285
Patent Application
App. No. 18/622,285

POSITIVE ELECTRODE MATERIAL COMPOSITION, POSITIVE ELECTRODE PLATE, METHOD FOR PREPARATION THEREOF, BATTERY AND ELECTRICAL DEVICE

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Patent No.
US None
App. No.
18/622,285
Abstract

A positive electrode material composition includes a positive electrode active material and optionally, an optional positive electrode conductive agent, the positive electrode active material includes a core and a shell on at least a portion of a surface of the core, the core includes lithium phosphate, the shell includes a carbon material, a graphitization degree of the positive electrode active material is denoted as g 1 , a mass percentage of the positive electrode conductive agent in the positive electrode material composition is denoted as w 1 , 10%≤g 1 ≤50%, and 0%≤w 1 ≤1%.

Claims (32)

1 . A positive electrode material composition, comprising a positive electrode active material and a positive electrode conductive agent, wherein the positive electrode active material comprises a core and a shell on at least a portion of a surface of the core, the core comprises lithium phosphate, the shell comprises a carbon material, a graphitization degree g 1 of the positive electrode active material satisfies 10%≤g 1 ≤50%, and a mass percentage w 1 of the positive electrode conductive agent in the positive electrode material composition satisfies 0%≤w 1 ≤1%.

2 . The positive electrode material composition according to claim 1 , wherein 15%≤g 1 ≤48% and 0%≤w 1 ≤0.8%.

3 . The positive electrode material composition according to claim 1 , wherein 20%≤g 1 ≤45% and 0%≤w 1 ≤0.6%.

4 . The positive electrode material composition according to claim 1 , wherein 25%≤g 1 ≤50% and 0%≤w 1 ≤0.2%.

5 . The positive electrode material composition according to claim 1 , wherein 25%≤g 1 ≤50% and w 1 is 0%.

6 . The positive electrode material composition according to claim 1 , wherein the graphitization degree g 1 of the positive electrode active material is obtained by an X-ray diffraction method.

7 . The positive electrode material composition according to claim 1 , wherein:

a powder resistivity of the positive electrode active material is greater than 0 and less than or equal to 30 Ω·cm; and/or

a mass percentage of a carbon element in the positive electrode active material is 0.5%-5%.

8 . The positive electrode material composition according to claim 1 , wherein:

an average particle size Dv50 of the positive electrode active material is 0.5 μm-10 μm; and/or

a powder compaction density of the positive electrode active material is ≥2.5 g/cm 3 under a force of 3 tons; and/or

the lithium phosphate comprises one or more selected from lithium iron phosphate, lithium manganese iron phosphate, and a composite material obtained by cladding and/or doping modification of the above materials; and/or

the positive electrode conductive agent comprises one or more selected from superconducting carbon, conductive graphite, acetylene black, carbon black, Ketjen black, carbon dots, carbon nanotubes, graphene, and carbon nanofibers.

9 . The positive electrode material composition according to claim 1 , wherein a mass percentage w 2 of the positive electrode active material in the positive electrode material composition is ≥97.0%.

10 . The positive electrode material composition according to claim 1 , wherein the positive electrode material composition further comprises a positive electrode binder and/or a positive electrode dispersant.

11 . A positive electrode plate, comprising a positive electrode current collector and a positive electrode film layer disposed on the positive electrode current collector, wherein the positive electrode film layer comprises the positive electrode material composition according to claim 1 .

12 . The positive electrode plate according to claim 11 , wherein an area density of the positive electrode plate is ≥300 mg/1540.25 mm 2 .

13 . The positive electrode plate according to claim 11 , wherein the positive electrode plate satisfies 0≤100000×(w 1 /CW)≤3.4, where CW denotes an area density of the positive electrode plate in mg/1540.25 mm 2 .

14 . The positive electrode plate according to claim 11 , wherein a thickness of the positive electrode film layer is 70 μm-145 μm.

15 . The positive electrode plate according to claim 11 , wherein the positive electrode satisfies 0≤100000×(w 1 /H)≤14, where H denotes a thickness of the positive electrode film layer in m.

16 . The positive electrode plate according to claim 11 , wherein a compaction density of the positive electrode plate is ≥2.55 g/cm 3 .

17 . The positive electrode plate according to claim 11 , further comprising a conductive coating located between the positive electrode current collector and the positive electrode film layer.

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

a resistance of the positive electrode plate is 0.1Ω-1Ω; and/or

a thickness of the positive electrode current collector is 10 μm-18 μm.

19 . A method for preparing a positive electrode plate, comprising:

providing a positive electrode slurry;

coating at least one surface of a positive electrode current collector with the positive electrode slurry; and

obtaining a positive electrode plate through drying and compaction procedures;

wherein the positive electrode slurry comprises the positive electrode material composition according to claim 1 and a solvent.

20 . A battery, comprising the positive electrode material composition according to claim 1 .

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 Mar 29, 2024
From: NIU, CONGSU; PEI, ZHENXING; LI, XIAOWEI; LIU, XIAOMEI
To: CONTEMPORARY AMPEREX TECHNOLOGY CO., LIMITED
Reel/Frame 066956/0679 →