Negative electrode of lithium ion secondary battery obtained by isostatically pressing a spherical graphite to eliminate voids therein
View Patent ↗The present invention is characterized in that a negative electrode material for lithium ion secondary batteries containing graphite having high density and high isotropy is produced by pressing a spherical graphite isostatically. Use of said negative electrode material provides a negative electrode for lithium ion secondary batteries and a lithium ion secondary battery excellent in discharge load characteristics, cycle characteristics, and the like.
1. A process for manufacturing a material for a negative electrode of a lithium ion secondary battery, comprising isostatically pressing a spherical graphite having voids inside a particle thereof to decrease the voids; providing an apparatus that comprises a tank, a feeder and an inward-directed nozzle; supplying a flake graphite into the tank through the feeder; supplying a jet stream from the inward-directed nozzle to form a collision area at the lower portion of the tank; bringing the flake graphite into collision in the jet stream to form a spherical graphite, wherein the inward-directed nozzle discharge pressure is set from 0.01 to 0.50 MPa, the flow rate of the gas supplied from the inward-directed nozzle is set from 0.2 to 1.0 Nm 3 /min, the internal pressure in the tank is set from −10 to 30 KPa, and the operational period is set from 1 to 100 minutes.
2. The process for manufacturing a material for a negative electrode of a lithium ion secondary battery according to claim 1 , comprising the steps of
pressing the spherical graphite isostatically to obtain a molded material, and
pulverizing the molded material.
3. The process for manufacturing the material according to claim 1 , wherein said graphite is a spherical graphite having a peak intensity ratio (Ih 110 /Ih 002 ) of 0.004 or more, wherein the peak intensity ratio (Ih 110 /Ih 002 ) is a ratio of the peak intensity (Ih 110 ) assigned to 110 plane to the peak intensity (Ih 002 ) assigned to 002 plane as determined by X-ray diffraction measurement.
4. The process for manufacturing the material according to claim 1 , further comprising forming a flake graphite into the spherical graphite.