IP Library Granted Patent US 11,196,051
Granted Patent B2
US 11,196,051 · App. 15/754,479 · Granted Dec 7, 2021

Positive electrode for secondary battery and secondary battery including the same

Inventors: Young Geun Choi (Daejeon, KR); Hyo Sik Kim (Daejeon, KR); Joo Yul Baek (Daejeon, KR); Song Taek Oh (Daejeon, KR)
H01M4/625C01B32/158H01M4/0404H01M4/0416H01M4/131H01M4/1391H01M4/364H01M4/366H01M4/505H01M4/525H01M10/0525B82Y30/00B82Y40/00H01M2004/021H01M2004/028Y10S977/742Y10S977/842Y10S977/948
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Quick Facts
Patent No.
US 11,196,051
App. No.
15/754,479
Granted
Dec 7, 2021
Kind
B2
Abstract

Provided are a positive electrode for a secondary battery which includes a positive electrode collector, a porous positive electrode active material layer disposed on a surface of the positive electrode collector and including a positive electrode active material and first carbon nanotubes, and a conductive layer disposed on a surface of the positive electrode active material layer, wherein the conductive layer includes a porous network structure formed by a plurality of second carbon nanotubes and has a porosity equal to or greater than a porosity of the positive electrode active material layer +10 vol %, and a secondary battery including the same.

Claims (31)

1. A positive electrode for a secondary battery, the positive electrode consisting of:

a positive electrode collector;

a porous positive electrode active material layer disposed on a surface of the positive electrode collector and including a positive electrode active material and first carbon nanotubes; and

a conductive layer disposed on a surface of the positive electrode active material layer,

wherein the conductive layer comprises a porous network structure formed by a plurality of second carbon nanotubes and has a porosity equal to or greater than a total of a porosity of the positive electrode active material layer and 10 vol. %, and

wherein the conductive layer is exposed outside the positive electrode, and

the conductive layer is prepared by:

adding the second carbon nanotubes in a dispersion medium to prepare a composition in which a second carbon nanotube layer is formed on a surface of the dispersion medium; and

impregnating an electrode assembly including the positive electrode active material layer on at least one side of the positive electrode collector in the composition,

forming the conductive layer exposed outside the positive electrode by lifting the electrode assembly so that the second carbon nanotube layer is disposed on a surface of the positive electrode active material layer.

2. The positive electrode for a secondary battery of claim 1 , wherein the porosity of the porous positive electrode active material layer is in a range of 10 vol % to 50 vol %, and the porosity of the conductive layer is in a range of 20 vol % to 60 vol %.

3. The positive electrode for a secondary battery of claim 1 , wherein the porous network structure is connected to the first carbon nanotubes in the positive electrode active material layer to form an electrically conductive path.

4. The positive electrode for a secondary battery of claim 1 , wherein the first and second carbon nanotubes are each independently bundle carbon nanotubes.

5. The positive electrode for a secondary battery of claim 1 , wherein the first and second carbon nanotubes each independently have a diameter of a carbon nanotube unit of 10 nm to 100 nm and a length of the carbon nanotube unit of 3 μm to 10 μm.

6. The positive electrode for a secondary battery of claim 1 , wherein the first and second carbon nanotubes each independently have a specific surface area of 20 m 2 /g to 2,000 m 2 /g.

7. The positive electrode for a secondary battery of claim 1 , wherein the positive electrode active material has an average particle diameter (D 50 ) of 3 μm to 20 μm.

8. The positive electrode for a secondary battery of claim 1 , wherein a thickness ratio of the positive electrode active material layer to the conductive layer is in a range of 1:0.001 to 1:0.05.

9. The positive electrode for a secondary battery of claim 8 , wherein the thickness ratio of the positive electrode active material layer to the conductive layer is in a range of 1:0.001 to 1:0.01.

10. The positive electrode for a secondary battery of claim 8 , wherein the thickness ratio of the positive electrode active material layer to the conductive layer is in a range of 1:0.001 to 1:0.005.

11. The positive electrode for a secondary battery of claim 1 , wherein a weight ratio of the first carbon nanotubes to the second carbon nanotubes is in a range of 1:0.08 to 1:0.42.

12. A method of preparing the positive electrode for a secondary battery of claim 1 , the method comprising:

adding the second carbon nanotubes in a dispersion medium to prepare a composition for forming a conductive layer in which a second carbon nanotube layer is formed on a surface of the dispersion medium; and

after impregnating an electrode assembly including the positive electrode active material layer on at least one side of the positive electrode collector in the composition, forming a conductive layer by lifting the electrode assembly so that the second carbon nanotube layer is disposed on a surface of the positive electrode active material layer.

13. A lithium secondary battery comprising the positive electrode of claim 1 .

14. A positive electrode for a secondary battery, the positive electrode consisting of:

a positive electrode collector;

a porous positive electrode active material layer disposed on a surface of the positive electrode collector and including a positive electrode active material and first carbon nanotubes; and

a conductive layer disposed on a surface of the positive electrode active material layer,

wherein the conductive layer comprises a porous network structure formed by a plurality of second carbon nanotubes and has a porosity equal to or greater than a total of a porosity of the positive electrode active material layer and 10 vol. %,

wherein the conductive layer is exposed outside the positive electrode, and

wherein a weight ratio of the first carbon nanotubes to the second carbon nanotubes is in a range of 1:0.08 to 1:0.42.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 4, 2021
From: LG CHEM, LTD.
To: LG ENERGY SOLUTION, LTD.
Reel/Frame 058295/0068 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 16, 2019
From: CHOI, YOUNG GEUN; KIM, HYO SIK; BAEK, JOO YUL; OH, SONG TAEK
To: LG CHEM, LTD.
Reel/Frame 048029/0904 →
Priority Claims (2)
KR 10-2015-0169150 · Nov 30, 2015 · national
KR 10-2016-0161525 · Nov 30, 2016 · national
Continuity (1)
Related Publication 20180248195A1 · Aug 30, 2018
Cited By (1)
US 12,278,374