IP Library Patent Application 16757899
Patent Application
App. No. 16/757,899

Carbonaceous Material for Negative Electrode Active Material Additive for Lithium Secondary Battery

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Quick Facts
Patent No.
US None
App. No.
16/757,899
Abstract

Provided is a carbonaceous material for a negative electrode active material additive for a lithium secondary battery, which has D v 50 of 6 μm or less and D n 50 of 1 μm or less. According to the carbonaceous material for a negative electrode active material additive for a lithium secondary battery of an embodiment of the present invention, since lithium ions may be rapidly adsorbed to and desorbed from a negative electrode adopting the carbonaceous material, output characteristics of a lithium secondary battery including the carbonaceous material are improved, and since a decrease in a capacity is small even when repeatedly charged and discharged, life characteristics are excellent.

Claims (13)

1 . A carbonaceous material for a negative electrode active material additive for a lithium secondary battery having D v 50 of 6 μm or less and D n 50 of 1 μm or less,

wherein D v 50 refers to a particle diameter when a cumulative volume is at 50% from a small diameter in a particle size distribution measurement by a laser scattering method, and D n 50 refers to a particle diameter when a cumulative number of particles is at 50% from a small particle diameter in a particle size distribution measurement by a laser scattering method.

2 . The carbonaceous material of claim 1 , wherein the carbonaceous material has D v 10 of 2.2 μm or less and D n 10 of 0.6 μm or less,

in which D v 10 refers to a particle diameter when a cumulative volume is at 10% from a small diameter in a particle size distribution measurement by a laser scattering method, and D n 10 refers to a particle diameter when a cumulative number of particles is at 10% from a small particle diameter in a particle size distribution measurement by a laser scattering method.

3 . The carbonaceous material of claim 1 , wherein the carbonaceous material has D v 90 of 11 μm or less and D n 90 of 3 μm or less,

in which D v 90 refers to a particle diameter when a cumulative volume is at 90% from a small diameter in a particle size distribution measurement by a laser scattering method, and D n 90 refers to a particle diameter when a cumulative number of particles is at 90% from a small particle diameter in a particle size distribution measurement by a laser scattering method.

4 . The carbonaceous material of claim 1 , wherein the carbonaceous material has a BET specific surface area of 3 m 2 /g or more and 10 m 2 /g or less.

5 . The carbonaceous material of claim 1 , wherein the carbonaceous material has a (002) average layer spacing (d(002)) of 3.4 Å or more and 4.0 Å or less as determined by an X-ray diffraction method.

6 . The carbonaceous material of claim 1 , wherein the carbonaceous material has a crystallite diameter in a direction of a C-axis, Lc (002) of 0.8 nm or more and 2 nm or less.

7 . The carbonaceous material of claim 1 , wherein the carbonaceous material is added to a carbon-based negative electrode active material, and an addition amount of the carbonaceous material is 5 wt % or less with respect to 100 wt % of a total amount of the carbon-based negative electrode active material and the carbonaceous material.

8 . The carbonaceous material of claim 1 , wherein the carbonaceous material includes a carbide obtained by heat-treating a polyurethane resin containing 150 parts by weight or more and 240 parts by weight or less of an isocyanate with respect to 100 parts by weight of a polyol, under an inert gas atmosphere to carbonize the polyurethane resin.

9 . The carbonaceous material of claim 8 , wherein the polyol is any one or two or more selected from the group consisting of a polyether-based polyol, a polyester-based polyol, a polytetramethylene ether glycol polyol, a poly Harnstoff dispersion (PHD) polyol, an amine-modified polyol, a Mannich polyol, and mixtures thereof.

10 . The carbonaceous material of claim 8 , wherein the isocyanate is any one or two or more selected from the group consisting of hexamethylene diisocyanate (HDI), isophorone diisocyanate (IPDI), 4,4′-dicyclohexylmethane diisocyanate (H12MDI), polyethylene polyphenyl diisocyanate, toluene diisocyanate (TDI), 2,2′-diphenylmethane diisocyanate (2,2′-MDI), 2,4′-diphenylmethane diisocyanate (2,4′-MDI), 4,4′-diphenylmethane diisocyanate (4,4′-MDI, monomeric MDI), polymeric diphenylmethane diisocyanate (polymeric MDI), orthotoluidine diisocyanate (TODI), naphthalene diisocyanate (NDI), xylene diisocyanate (XDI), lysine diisocyanate (LDI), and triphenylmethane triisocyanate (TPTI).

Assignments (2)
CHANGE OF NAME Recorded Jan 10, 2022
From: AEKYUNG PETROCHEMICAL CO., LTD.
To: AEKYUNG CHEMICAL CO. LTD.
Reel/Frame 058672/0941 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 21, 2020
From: LEE, JANG HO; CHAE, BYUNG MOK; CHO, SANG WON; LEE, DONG JU; JEONG, SU BIN
To: AEKYUNG PETROCHEMICAL CO., LTD.
Reel/Frame 052453/0830 →