IP Library Granted Patent US 8,574,533
Granted Patent B2
US 8,574,533 · App. 10/583,762 · Granted Nov 5, 2013

Material for negative electrode of non-aqueous electrolyte secondary battery, process for producing the same, negative electrode and battery

Inventors: Naohiro Sonobe (Fukushima-Ken, JP); Hiroshi Ohta (Fukushima-Ken, JP); Takahiro Akita (Fukushima-Ken, JP)
Assignee: Kureha Corporation
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Quick Facts
Patent No.
US 8,574,533
App. No.
10/583,762
Granted
Nov 5, 2013
Kind
B2
Abstract

A negative electrode material for non-aqueous electrolyte secondary batteries, comprises: a carbon material having a sphericity of at least 0.8, and exhibiting an average (002) interlayer spacing d 002 of 0.365-0.400 nm, a crystallite size in a c-axis direction Lc (002) of 1.0-3.0 nm, as measured by X-ray diffractometry, a hydrogen-to-carbon atomic ratio (H/C) of at most 0.1 as measured by elementary analysis, and an average particle size Dv 50 of 1-20 μm. The negative electrode material is spherical and exhibits excellent performances including high output performance and durability.

Claims (10)

1. A negative electrode material for non-aqueous electrolyte secondary batteries, comprising: a carbon material having a sphericity of at least 0.8, and exhibiting an average (002) interlayer spacing d 002 of 0.365-0.400 nm, a crystallite size in a c-axis direction LC (002) of 1.0-3.0 nm, as measured by X-ray diffractometry, a hydrogen-to-carbon atomic ratio (H/C) of at most 0.1 as measured by elementary analysis, and an average particle size Dv 50 (μm) of 1-20 μm, and nitrogen in an amount of 0.5-5 wt %; wherein the carbon material further exhibits a specific surface area S (m 2 /g) giving a product S×Dv 50 of 3-40 and the negative electrode material has a ratio D 4 /D 1 of at most 3.0 between a weight-average particle size D 4 and a length average particle size D 1 .

2. A negative electrode material according to claim 1 , comprising a carbonization product of a vinyl resin.

3. A negative electrode material according to claim 1 , having a bulk specific gravity of at least 0.40 and below 0.60.

4. A negative electrode material according to claim 1 , exhibiting an exothermic peak temperature of at least 600° C.

5. A negative electrode material according to claim 1 , comprising a surface of the carbon material coated with 0.1-10 wt. % of a silicon compound.

6. A process for producing a negative electrode material for non-aqueous electrolyte secondary batteries according to claim 1 , comprising: oxidizing a spherical vinyl resin obtained through suspension polymerization to oxidation at a temperature of 150-400° C. in an oxidizing gas atmosphere to provide a carbon precursor and carbonizing the carbon precursor in an inert gas atmosphere.

7. A negative electrode for non-aqueous electrolyte secondary batteries, having a layer of active substance comprising a negative electrode material according to claim 1 and formed at a coating rate of at most 60 g/m 2 .

8. A non-aqueous electrolyte secondary battery having a negative electrode according to claim 7 .

9. A negative electrode material for non-aqueous electrolyte secondary batteries, comprising: a carbon material having a sphericity of at least 0.8, and exhibiting an average (002) interlayer spacing d 002 of 0.365-0.400 nm, a crystallite size in a c-axis direction LC (002) of 1.0-3.0 nm, as measured by X-ray diffractometry, a hydrogen-to-carbon atomic ratio (H/C) of at most 0.1 as measured by elementary analysis, and an average particle size Dv 50 (μm) of 1-20 μm, and nitrogen in an amount of 0.5-5 wt %; wherein the carbon material is a carbonization product of a vinyl resin and the negative electrode material has a ratio D 4 /D 1 of at most 3.0 between a weight-average particle size D 4 and a length average particle size D 1 .

10. A negative electrode material for non-aqueous electrolyte secondary batteries, comprising: a carbon material having a sphericity of at least 0.8, and exhibiting an average (002) interlayer spacing d 002 of 0.365-0.400 nm, a crystallite size in a c-axis direction Lc (002) of 1.0-3.0 nm, as measured by X-ray diffractometry, a hydrogen-to-carbon atomic ratio (H/C) of at most 0.1 as measured by elementary analysis, and an average particle size Dv 50 of 1-20 μm; wherein the carbon material further exhibits a nitrogen content of 0.5-5 wt. % and the negative electrode material has a ratio D 4 /D 1 of at most 3.0 between a weight-average particle size D 4 and a length average particle size D 1 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 21, 2006
From: SONOBE, NAOHIRO; OHTA, HIROSHI; AKITA, TAKAHIRO
To: KUREHA CORPORATION
Reel/Frame 018021/0678 →
Priority Claims (1)
JP 2004-100749 · Mar 30, 2004 · national
Continuity (1)
Related Publication 20090140214A1 · Jun 4, 2009