Positive electrode active material for non-aqueous electrolyte secondary battery and method for producing the same, positive electrode mixture paste for non-aqueous electrolyte secondary battery, and non-aqueous electrolyte secondary battery

US11996556B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-11996556-B2
Application numberUS-201816641810-A
CountryUS
Kind codeB2
Filing dateAug 23, 2018
Priority dateAug 25, 2017
Publication dateMay 28, 2024
Grant dateMay 28, 2024

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  5. First independent claim

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Abstract

Official abstract text for this publication.

An object is to provide a positive electrode active material for a non-aqueous electrolyte secondary battery that can suppress gelation of a positive electrode mixture paste and can improve stability when a non-aqueous electrolyte secondary battery is manufactured. A positive electrode active material for a non-aqueous electrolyte secondary battery has a hexagonal layered crystal structure, is represented by general formula (1): Li 1+s Ni x Co y Mn z M w B t O 2+α , and includes a lithium-metal composite oxide containing a secondary particle with a plurality of aggregated primary particles and a lithium-boron compound present on at least a part of surfaces of the primary particles. The amount of lithium hydroxide that elutes when the positive electrode active material is dispersed in water, measured by a neutralization titration method, is 0.01% by mass or more and 0.5% by mass or less with respect to the entire positive electrode active material.

First claim

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The invention claimed is: 1. A positive electrode active material for a non-aqueous electrolyte secondary battery, having a hexagonal layered crystal structure and represented by general formula (1): Li 1+s Ni x Co y Mn z M w B t O 2+α (in the formula (1), −0.05≤s≤0.20, 0.45≤x≤0.95, 0≤y≤0.5, 0≤z≤0.35, 0≤w≤0.10, 0.02≤t≤0.04, x+y+z+w=1, 0≤α≤0.2, and M represents at least one element selected from V, Mg, Nb, Ti, W, and Al), the positive electrode active material comprising: a lithium-metal composite oxide containing a secondary particle with a plurality of aggregated primary particles and having voids in the secondary particle; and a lithium-boron compound present at least on a part of surfaces of the primary particles, the part of surfaces comprising the surfaces of the secondary particle and the surfaces of the voids in the secondary particle, wherein an amount of lithium hydroxide that elutes when the positive electrode active material is dispersed in water, measured by a neutralization titration method, is 0.01% by mass or more and 0.5% by mass or less with respect to the entire positive electrode active material, and a moisture content in the positive electrode active material is 0.1% by mass or less, and Li occupancy of the positive electrode active material is 98% or more and 100% or less. 2. The positive electrode active material for a non-aqueous electrolyte secondary battery according to claim 1 , having an average particle size of 3 μm or more and 25 μm or less. 3. A method for manufacturing a positive electrode active material for a non-aqueous electrolyte secondary battery, having a hexagonal layered crystal structure and represented by general formula (1): Li 1+s Ni x Co y Mn z M w B t O 2+α (in the formula (1), −0.05≤s≤0.20, 0.45≤x≤0.95, 0≤y≤0.5, 0≤z≤0.35, 0≤w≤0.10, 0.02≤t≤0.04, x+y+z+w=1, 0≤α≤0.2, and M represents at least one element selected from V, Mg, Nb, Ti, W, and Al), the method comprising: mixing a lithium-metal composite oxide represented by general formula (2): Li 1+s Ni x Co y Mn z M w O 2+α (in the formula (2), −0.05≤s≤0.20, 0.45≤x≤0.95, 0≤y≤0.5, 0≤z≤0.35, 0≤w≤0.10, x+y+z+w=1, 0≤a≤0.2, and M satisfies at least one element selected from V, Mg, Nb, Ti, W, and Al) with a solid form of a boron compound not containing lithium to obtain a boron mixture; and thermally treating the boron mixture at a temperature of 200° C. or higher and lower than 300° C. in an oxidizing atmosphere, wherein the lithium-metal composite oxide contains a secondary particle with a plurality of aggregated primary particles and has voids in the secondary particle, and an amount of lithium hydroxide that elutes when the lithium-metal composite oxide after thermally treating is dispersed in water, measured by a neutralization titration method, is 0.01% by mass or more and 0.5% by mass or less with respect to the entire positive electrode active material. 4. The method for manufacturing a positive electrode active material for a non-aqueous electrolyte secondary battery according to claim 3 , wherein an amount of lithium hydroxide that elutes when the positive electrode active material obtained after the thermal treatment is dispersed in water, measured by a neutralization titration method, is adjusted so as to be 0.01% by mass or more and 0.5% by mass or less with respect to the entire positive electrode active material. 5. The method for manufacturing a positive electrode active material for a non-aqueous electrolyte secondary battery according to claim 3 , wherein the boron compound is at least one of boron oxide, ammonium borate, and an oxo acid of boron. 6. The method for manufacturing a positive electrode active material for a non-aqueous electrolyte secondary battery according to claim 3 , wherein the boron compound is orthoboric acid. 7. A positive electrode mixture paste for a non-aqueous electrolyte secondary battery, comprising the positive electrode active material for a non-aqueous electrolyte secondary battery according to claim 1 . 8. A non-aqueous electrolyte secondary battery comprising a positive electrode, a negative electrode, a separator, and a non-aqueous electrolyte, wherein the positive electrode includes the positive electrode active material for a non-aqueous electrolyte secondary battery according to claim 1 . 9. The positive electrode active material for a non-aqueous electrolyte secondary battery according to claim 1 , wherein the lithium-boron compound has been formed by thermal treatment at a temperature of 200° C. or higher and lower than 300° C. in which a solid form of a boron compound not containing lithium is reacted with an excessive lithium compound present on the surfaces of the primary particles of the lithium-metal composite oxide. 10. The positive electrode active material for a non-aqueous electrolyte secondary battery according to claim 1 , wherein the lithium-boron compound is partially formed on the surfaces of the primary particles. 11. The positive electrode active material for a non-aqueous electrolyte secondary battery according to claim 9 , wherein the lithium-boron compound is partially formed on the surfaces of the primary particles. 12. The method according to claim 3 , wherein the lithium-metal composite oxide and the boron compound are mixed by a mixer. 13. The positive electrode active material for a non-aqueous electrolyte secondary battery according to claim 1 , wherein 0.025≤t≤0.04.

Assignees

Inventors

Classifications

  • H01M4/525Primary

    of mixed oxides or hydroxides containing iron, cobalt or nickel for inserting or intercalating light metals, e.g. LiNiO2, LiCoO2 or LiCoOxFy · CPC title

  • involving thermal treatment, e.g. firing, sintering, backing particulate active material, thermal decomposition, pyrolysis · CPC title

  • Electrodes based on mixed oxides or hydroxides, or on mixtures of oxides or hydroxides, e.g. LiCoOx · CPC title

  • of electrodes based on mixed oxides or hydroxides, or on mixtures of oxides or hydroxides, e.g. LiCoOx · CPC title

  • H01M4/364Primary

    as mixtures · CPC title

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What does patent US11996556B2 cover?
An object is to provide a positive electrode active material for a non-aqueous electrolyte secondary battery that can suppress gelation of a positive electrode mixture paste and can improve stability when a non-aqueous electrolyte secondary battery is manufactured. A positive electrode active material for a non-aqueous electrolyte secondary battery has a hexagonal layered crystal structure, is …
Who is the assignee on this patent?
Sumitomo Metal Mining Co
What technology area does this patent fall under?
Primary CPC classification H01M4/525. Mapped technology areas include Electricity.
When was this patent published?
Publication date Tue May 28 2024 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 12 related publications on this page (citations in our corpus or others sharing the same primary CPC).