IP Library Granted Patent US 7,141,229
Granted Patent B2
US 7,141,229 · App. 10/469,854 · Granted Nov 28, 2006

Graphite material for negative pole of lithium secondary battery, method of manufacturing the graphite material, and lithium secondary battery

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Quick Facts
Patent No.
US 7,141,229
App. No.
10/469,854
Granted
Nov 28, 2006
Kind
B2
Abstract

This invention relates to a graphite material for negative electrode of lithium secondary battery. This graphite material is obtained by carbonizing the pulverized green coke to yield coke, adding one kind or more of boron or a compound thereof to the coke, graphitizing the resulting mixture and controlling the particle size of the product graphite. This graphite material for negative electrode is characterized by showing a tap density of 0.95 g/cm 3 or more after tapping 20 times or 1.15 g/cm 3 or more after tapping 300 times and a BET specific surface area of 1.5 m 2 /g or less. A lithium secondary battery made by the use of this graphite material for negative electrode has a large discharge capacity and suffers little loss during charging and discharging.

Claims (14)

1. A process for manufacturing a graphite material for negative electrode of lithium secondary battery, which process comprises

pulverizing green coke produced from coal- or petroleum-derived heavy oil by a delayed coker to an average particle diameter of 50 μm or less,

carbonizing the pulverized green coke at 700–1500° C. to yield coke,

adding one kind or more or boron or a compound thereof to the coke,

graphitizing the resulting mixture, and

controlling the particle size of the graphite material produced,

wherein the coke possesses anisotropy due to flow texture,

wherein the green coke after pulverization and/or carbonization is subjected to deagglomeration and/or classification to control the average particle diameter of the green coke in the range of 3–50 μm,

wherein boron or the compound thereof is added in an amount of 0.1–5.0 wt % as boron,

wherein the control of the particle size consists of passing the pulverized particles through a sieve with an opening of 10–120 μm to remove coarse particles, and

wherein the graphite material comprises (a) a tap density of 0.95 g/cm 3 or more after tapping 20 times or 1.15 g/cm 3 more after tapping 300 times, and a BET specific surface area of 1.5 m 2 /g or less, and (b) a 10% cumulative particle diameter in the range of 2–12 μm, a 90% cumulative particle diameter in the range of 10–120 μm and an average particle diameter in the range of 5–100 μm.

2. A process for manufacturing a graphite material for negative electrode of lithium secondary battery as described in claim 1 wherein the graphitization treatment consists of a heat treatment to be performed in an argon atmosphere at or above 2600° C.

3. A process for manufacturing a graphite material for negative electrode of lithium secondary battery as described in claim 1 wherein the boron compound is boric acid, boron oxide, boron carbide, boron nitride or a borate salt.

4. A process for manufacturing a graphite material for negative electrode of lithium secondary battery as described in claim 1 wherein the green coke after pulverization is subjected to an oxidation treatment before the carbonization treatment.

Assignments (2)
CHANGE OF NAME Recorded Mar 20, 2013
From: NIPPON STEEL CHEMICAL CO., LTD.
To: NIPPON STEEL & SUMIKIN CHEMICAL CO., LTD.
Reel/Frame 030049/0771 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 5, 2003
From: KAWANO, YOICHI; FUKUDA, TETSUSEI; SUGIURA, TSUTOMU; HAMADA, TAKESHI; SHOJI, HIROMASA; KOHNO, TARO
To: NIPPON STEEL CHEMICAL CO., LTD.
Reel/Frame 014890/0480 →