Method of producing positive electrode active material for nonaqueous electrolyte secondary battery
US-2022112095-A1 · Apr 14, 2022 · US
US12261293B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12261293-B2 |
| Application number | US-202017637938-A |
| Country | US |
| Kind code | B2 |
| Filing date | Aug 28, 2020 |
| Priority date | Aug 30, 2019 |
| Publication date | Mar 25, 2025 |
| Grant date | Mar 25, 2025 |
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A positive electrode active material for a lithium ion secondary battery, the positive electrode active material including a lithium-nickel composite oxide having a hexagonal layered structure and configured by single primary particles or by single primary particles and secondary particles with a plurality of aggregated primary particles, wherein a number proportion of the single primary particles to all of the particles is 30% or more, a ratio of a (003) diffraction peak intensity I (003) to a (104) diffraction peak intensity I (104) (I (003) /I (104) ) is 2.0 or more, and a degree of circularity is 0.93 or more and 1.00 or less.
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The invention claimed is: 1. A positive electrode active material for a lithium ion secondary battery, the positive electrode active material comprising a lithium-nickel composite oxide having a hexagonal layered structure and configured by single primary particles or by single primary particles and secondary particles with a plurality of aggregated primary particles, wherein a number proportion of the single primary particles to all of the single primary and secondary particles is 30% or more, elements constituting the lithium-nickel composite oxide include lithium (Li), nickel (Ni), and optionally at least one element M (M) selected from the group consisting of Co, Mn, Al, V, Mg, Mo, Ca, Cr, Zr, Ti, Nb, Na, K, W, Fe, Zn, B, Si, P, and Ta, a mole number ratio of the elements is represented as Li: Ni: M=a: b: c (provided that, 0.95≤a≤1.10, 0.30≤b≤1.00, 0.00≤c≤0.70, and b+c=1), a ratio of a (003) diffraction peak intensity I (003) to a (104) diffraction peak intensity I (104) (I (003) /I (104) ) is 2.0 or more, the (003) diffraction peak intensity and the (104) diffraction peak intensity determined from X-ray diffraction measured using a flat plate sample holder of a Bragg Brentano optical system using a Cu-kα ray as an X-ray source, a degree of circularity is 0.93 or more and 1.00 or less, the degree of circularity determined with a flow image analysis method using a wet flow particle size/shape analyzer, and the positive electrode active material has a specific surface area of 1.0 m 2 /g or more and 5.0 m 2 /g or less, and the specific surface area is determined with a nitrogen adsorption method. 2. The positive electrode active material for a lithium ion secondary battery according to claim 1 , wherein the positive electrode active material has a volume-based median diameter (D50) of 10 μm or less, and the lithium-nickel composite oxide has an average primary particle size of 0.3 μm or more. 3. A lithium ion secondary battery comprising: a positive electrode; a negative electrode; and a non-aqueous electrolyte, the positive electrode containing the positive electrode active material for a lithium ion secondary battery according to claim 1 . 4. The positive electrode active material for a lithium ion secondary battery according to claim 1 , wherein a number proportion of the single primary particles to all of the single primary and secondary particles is 50% or more.
Agglomerated particles · CPC title
containing alkali metals, e.g. LiNiO2 · CPC title
Positive electrodes · CPC title
Physical characteristics, e.g. porosity, surface area · CPC title
Rocking-chair batteries, i.e. batteries with lithium insertion or intercalation in both electrodes; Lithium-ion batteries · CPC title
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