IP Library Granted Patent US 12683156
Granted Patent B2
US 12683156 · App. 18/094,099 · Granted Jul 14, 2026

Cathode for lithium secondary battery and lithium secondary battery including the same

Inventors: Jung Hwan Kim (Daejeon, KR); Dong Wook Ha (Daejeon, KR); Soo Min Park (Daejeon, KR); Sang Han Lee (Daejeon, KR); Jong Hyuk Lee (Daejeon, KR); In Haeng Cho (Daejeon, KR)
Assignee: SK On Co., Ltd.
H01M4/525H01M4/386H01M10/052H01M2004/021
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Quick Facts
Patent No.
US 12683156
App. No.
18/094,099
Granted
Jul 14, 2026
Kind
B2
Abstract

A cathode for a lithium secondary battery according to embodiments of the present invention includes a cathode current collector, and a cathode active material layer formed on the cathode current collector. The cathode active material layer includes first lithium metal oxide particles each having a secondary particle shape in which primary particles are aggregated and second lithium metal oxide particles each having a single particle shape. A cross-section of the cathode active material layer from an SEM satisfies Equations 1 and 2.

Claims (25)

1 . A cathode for a lithium secondary battery, comprising:

a cathode current collector; and

a cathode active material layer formed on the cathode current collector,

wherein the cathode active material layer comprises first lithium metal oxide particles each having a secondary particle shape in which primary particles are aggregated and second lithium metal oxide particles each having a single particle shape, and satisfies Equations 1 and 2:

40≤[ A 2 /( A 1 +A 2 )]×100≤98  [Equation 1]

A C /A 1 ×100≤2  [Equation 2]

wherein, in Equations 1 and 2, A 1 is a total cross-sectional area within a circumference of the first lithium metal oxide particles measured from a scanning electron microscope (SEM) cross-sectional image of the cathode active material layer at a magnification of 1000 times, A 2 is a total cross-sectional area within a circumference of the second lithium metal oxide particles measured from the SEM cross-sectional image at a magnification of 1000 times, and A C is a total cross-sectional area of cracks in the first lithium metal oxide particles measured from the SEM cross-sectional image at a magnification of 1000 times, and each of A 1 , A 2 , and A C are measured by analyzing the SEM cross-sectional images using Image J program.

2 . The cathode for a lithium secondary battery of claim 1 , wherein each of the first lithium metal oxide particles and the second lithium metal oxide particles contains nickel, and

a concentration of nickel in the first lithium metal oxide particles is greater than a concentration of nickel in the second lithium metal oxide particles.

3 . The cathode for a lithium secondary battery of claim 2 , wherein a difference between the concentrations of nickel in the first lithium metal oxide particles and the second lithium metal oxide particles is in a range from 1 mol % to 20 mol %.

4 . The cathode for a lithium secondary battery of claim 2 , wherein the concentration of nickel in the first lithium metal oxide particles is 85 mol % or more based on a total number of moles of all elements except for lithium and oxygen.

5 . The cathode for a lithium secondary battery of claim 1 , wherein an average particle diameter of the first lithium metal oxide particles is in a range from 10 μm to 20 μm, and an average particle diameter of the second lithium metal oxide particles is in a range from 3 μm to 10 μm.

6 . The cathode for a lithium secondary battery of claim 1 , wherein a ratio of an average particle diameter of the second lithium metal oxide particles relative to an average particle diameter of the first lithium metal oxide particles is in a range from 0.2 to 0.5.

7 . The cathode for a lithium secondary battery of claim 1 , wherein a specific surface area of the first lithium metal oxide particles is in a range from 0.3 m 2 /g to 1.3 m 2 /g, and a specific surface area of the second lithium metal oxide particles is in a range from 0.1 m 2 /g to 1 m 2 /g.

8 . The cathode for a lithium secondary battery of claim 1 , wherein a ratio of specific surface areas of the second lithium metal oxide particles relative to the first lithium metal oxide particles is in a range from 0.3 to 1.3.

9 . The cathode for a lithium secondary battery of claim 1 , wherein a hardness ratio of the second lithium metal oxide particles relative to the first lithium metal oxide particles is in a range from 1.5 to 2.5.

10 . The cathode for a lithium secondary battery of claim 1 , wherein the cathode has an electrode density of 3.5 g/cc or more.

11 . The cathode for a lithium secondary battery of claim 1 , wherein [A 2 /(A 1 +A 2 )]×100>50.

12 . The cathode for a lithium secondary battery of claim 1 , wherein A C /A 1 ×100<1.

13 . A lithium secondary battery, comprising:

the cathode of claim 1 ; and

an anode facing the cathode.

14 . The lithium secondary battery of claim 13 , wherein the anode comprises an anode current collector and an anode active material layer formed on at least one surface of the anode current collector, and

the anode active material layer includes a silicon-based active material.

15 . The lithium secondary battery of claim 14 , wherein a content of silicon atoms is in a range from 1 wt % to 20 wt % based on a total weight of the anode active material layer.