IP Library Patent Application 18769457
Patent Application
App. No. 18/769,457

SECONDARY BATTERY, APPARATUS, ARTIFICIAL GRAPHITE AND METHOD FOR PREPARATION THEREOF

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Patent No.
US None
App. No.
18/769,457
Abstract

The present application discloses a secondary battery, an apparatus including the secondary battery, artificial graphite and a method for the preparation thereof. The secondary battery includes a negative electrode plate including a negative active material, wherein the negative active material includes an artificial graphite having a numerical particle size D n 10 of at least 1 μm; the artificial graphite has a graphitization degree of 90% to 95%; and the negative electrode plate has an OI value of at most 15, wherein the OI value of the negative electrode plate represents a ratio C 004 /C 110 , in which C 004 is the peak area of the diffraction peak of 004 crystal plane of the artificial graphite in the negative electrode plate and C 110 is the peak area of the diffraction peak of 110 crystal plane of the artificial graphite in the negative electrode plate.

Claims (39)

1 . A secondary battery comprising a negative electrode plate, the negative electrode plate comprising a negative active material, wherein

the negative active material comprises an artificial graphite having a number particle size D n 10 of ≥1 μm;

the artificial graphite has a graphitization degree of from 90% to 95%; and

the negative electrode plate has an OI value of ≤15, wherein the OI value of the negative electrode plate represents a ratio C 004 /C 110 , in which C 004 is the peak area of the diffraction peak of 004 crystal plane of the artificial graphite in the negative electrode plate and C 110 is the peak area of the diffraction peak of 110 crystal plane of the artificial graphite in the negative electrode plate.

2 . The secondary battery according to claim 1 , wherein the artificial graphite has a numerical particle size D n 10 of from 1.2 μm to 3 μm, preferably from 1.3 μm to 2 μm.

3 . The secondary battery according to claim 1 , wherein the artificial graphite has a graphitization degree of from 92% to 94%.

4 . The secondary battery according to claim 1 , wherein the negative electrode plate has a compaction density of from 1.55 g/cm 3 to 1.75 g/cm 3 , preferably from 1.6 g/cm 3 to 1.7 g/cm 3 ; more preferably from 1.62 g/cm 3 to 1.68 g/cm 3 .

5 . The secondary battery according to claim 1 , wherein the OI value of the negative electrode plate is from 8 to 12.

6 . The secondary battery according to claim 1 , wherein the artificial graphite further satisfies one or more of the following (1) to (4):

(1) the artificial graphite has a volume particle size D v 10 of ≥6 μm, preferably 6.5 μm≤D v 10≤10.5 μm;

(2) the artificial graphite has a volume average particle size D v 50 of from 15 μm to 22 μm, preferably from 15 μm to 18 μm;

(3) the artificial graphite has a particle size span (D v 90−D v 10)/D v 50 of from 1.1 to 1.8, preferably from 1.2 to 1.5;

(4) the artificial graphite has a specific surface area SSA of from 0.8 m 2 /g to 2.0 m 2 /g, preferably from 1.0 m 2 /g to 1.5 m 2 /g.

7 . The secondary battery according to claim 1 , wherein the artificial graphite comprises secondary particles formed by agglomeration of primary particles; proportion of number of the secondary particles in the artificial graphite is at least 60%, preferably from 70% to 90%.

8 . The secondary battery according to claim 1 , wherein the artificial graphite has a D peak intensity I D and a G peak intensity I G , and the ratio I D /I G satisfies: I D /I G ≤0.25, preferably 0.1≤I D /I G ≤0.2.

9 . The secondary battery according to claim 1 , wherein

the artificial graphite has a tap density of from 0.85 g/cm 3 to 1.35 g/cm 3 , preferably from 0.95 g/cm 3 to 1.15 g/cm 3 ; and/or,

the artificial graphite has a powder compaction density of from 1.65 g/cm 3 to 1.85 g/cm 3 under a pressure of 2000 kg, preferably from 1.68 g/cm 3 to 1.83 g/cm 3 .

10 . The secondary battery according to claim 1 , wherein the artificial graphite has a gram capacity of from 350 mAh/g to 359 mAh/g, preferably from 352 mAh/g to 355 mAh/g.

11 . The secondary battery according to claim 1 , wherein the negative electrode plate has an areal density of from 7.5 mg/cm 2 to 14.0 mg/cm 2 , preferably from 9.5 mg/cm 2 to 12.0 mg/cm 2 .

12 . An apparatus comprising the secondary battery according to claim 1 .

13 . An artificial graphite, wherein the artificial graphite has a numerical particle size D n 10 of at least 1 μm; the artificial graphite has a graphitization degree of 90% to 95%; and the ratio of a peak area of the 004 crystal plane to a peak area of the 110 crystal plane is at most 15.

14 . A method for preparing an artificial graphite, comprising the following steps:

(1) crushing green coke materials and classifying them;

(2) shaping the product obtained in step (1) and then removing fine powder;

(3) granulating the product obtained in step (2), wherein a binder is added during the granulation process in an amount of not exceeding 5% of the total weight of the green coke materials;

(4) subjecting the product obtained in step (3) to a graphitization treatment at a temperature of 2800° C.˜3200° C. to obtain the artificial graphite;

wherein

the artificial graphite has a number particle size D n 10 of ≥1 μm,

the artificial graphite has a graphitization degree of 90% to 95%; and

the ratio of a peak area of the 004 crystal plane to a peak area of the 110 crystal plane of the artificial graphite is ≤15.

15 . The method according to claim 14 , wherein

the green coke comprises one or more of green petroleum coke, green pitch coke and metallurgical coke; preferably, the green coke comprises green petroleum coke.

16 . The method according to claim 14 , wherein the green coke is non-needle coke.

17 . The method according to claim 14 , wherein a content of volatile component in the green coke is from 6% to 12%, preferably from 7% to 10%; and/or,

a content of sulfur in the green coke is ≤2%, preferably ≤0.6%.

18 . The method according to claim 14 , wherein in step (3), the product obtained in step (2) is granulated without adding a binder.

19 . The method according to claim 14 , wherein the product obtained in step (3) is graphitized at a temperature of from 2900° C. to 3100° C.

20 . A method for preparing a secondary battery, comprising the step of preparing a negative electrode plate by using the artificial graphite according to claim 13 .

Assignments (1)
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 →