IP Library Granted Patent US 12695081
Granted Patent B2
US 12695081 · App. 18/697,323 · Granted Jul 28, 2026

Positive electrode for secondary battery, method for producing same, and secondary battery

Inventors: Youichirou Uka (Hyogo Ken, JP); Rina Yamamoto (Hyogo Ken, JP); Yoshio Kato (Osaka Fu, JP)
Assignee: PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD.
H01M4/0404H01M4/364H01M4/366H01M4/62H01M10/052H01M2004/021H01M2004/028
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Quick Facts
Patent No.
US 12695081
App. No.
18/697,323
Granted
Jul 28, 2026
Kind
B2
Abstract

A positive electrode for a secondary battery including a positive electrode current collector, and a positive electrode mixture layer containing a positive electrode active material and disposed on a surface of the positive electrode current collector, in which the positive electrode mixture layer contains a first positive electrode active material, a second positive electrode active material crushable more easily than the first positive electrode active material, and when the positive electrode mixture layer is zoned into a first region and a second region having the same thickness, the first positive electrode active material is contained more in the first region than in the second region, and the second positive electrode active material is contained more in the second region than in the first region is used. The crack ratio of the positive electrode active material in the first region is smaller than that in the second region.

Claims (20)

1 . A positive electrode for a secondary battery, comprising:

a positive electrode current collector; and a positive electrode mixture layer containing a positive electrode active material and disposed on a surface of the positive electrode current collector, wherein

the positive electrode mixture layer contains a first positive electrode active material, and a second positive electrode active material crushable more easily than the first positive electrode active material,

when the positive electrode mixture layer is zoned into a first region and a second region having the same thickness, the first positive electrode active material is contained more in the first region than in the second region, and the second positive electrode active material is contained more in the second region than in the first region, and

a crack ratio RC2 of the positive electrode active material in the second region is 1.2 times or more as large as a crack ratio RC1 of the positive electrode active material in the first region.

2 . The positive electrode for a secondary battery according to claim 1 , wherein the crack ratio RC2 of the positive electrode active material in the second region is 1.5 times or more as large as the crack ratio RC1 of the positive electrode active material in the first region.

3 . The positive electrode for a secondary battery according to claim 1 , wherein the crack ratio RC2 of the positive electrode active material in the second region is 70% or less.

4 . The positive electrode for a secondary battery according to claim 1 , wherein the second region is nearer to the positive electrode current collector than the first region.

5 . A secondary battery comprising:

the positive electrode for a secondary battery according to claim 1 ;

a separator; a negative electrode facing the positive electrode for a secondary battery with the separator interposed between the positive electrode and the negative electrode; and a liquid electrolyte.

6 . A method for producing the positive electrode for a secondary battery according to claim 1 , the method comprising:

a step of preparing a positive electrode current collector; and

a step of disposing a positive electrode mixture layer including a first layer and a second layer, on a surface of the positive electrode current collector;

the step of disposing the positive electrode mixture layer including

a step of forming the second layer on the surface of the positive electrode current collector, and

a step of forming the first layer on the second layer, wherein

the first layer contains at least a first positive electrode active material, and the second layer contains at least a second positive electrode active material crushable more easily than the first positive electrode active material.

7 . The method for producing the positive electrode for a secondary battery according to claim 6 , further comprising a step of, after forming the second layer, compressing the second layer together with the positive electrode current collector.

8 . The method for producing the positive electrode for a secondary battery according to claim 6 , wherein a ratio of a D90 diameter to a D10 diameter of the first positive electrode active material is larger than a ratio of a D90 diameter to a D10 diameter of the second positive electrode active material.