Positive electrode active material for nonaqueous electrolyte secondary batteries, and nonaqueous electrolyte secondary battery
US-9947924-B2 · Apr 17, 2018 · US
US2018198122A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2018198122-A1 |
| Application number | US-201815915783-A |
| Country | US |
| Kind code | A1 |
| Filing date | Mar 8, 2018 |
| Priority date | Dec 27, 2012 |
| Publication date | Jul 12, 2018 |
| Grant date | — |
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A positive electrode active material for nonaqueous electrolyte secondary batteries, which has high energy density and excellent cycle characteristics. A positive electrode active material for nonaqueous electrolyte secondary batteries of the present invention is represented by general formula LiNi x Co y M (1-x-y) O 2 (wherein M represents at least one element selected from among metal elements, 0.3≤x<1.0 and 0<y≤0.5) and is configured of particles, each of which is an aggregate of crystallites. Each particle has a compressive breaking strength of from 200 MPa to 500 MPa (inclusive), and the crystallite diameter in the vector direction of the particle is from 100 nm to 300 nm (inclusive).
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1 . A positive electrode active material to be used for nonaqueous electrolyte secondary batteries, wherein the positive electrode active material is represented by the general formula LiNi x Co y M (1-x-y) O 2 (where M consists of Mn and optionally at least one of the group consisting of magnesium (Mg), zirconium (Zr), molybdenum (Mo), tungsten (W), aluminum (Al), chromium (Cr), vanadium (V), cerium (Ce), titanium (Ti), iron (Fe), potassium (K), gallium (Ga) and indium (In), 0.3≤x<1.0, and 0<y≤0.5) and is configured of secondary particles each being formed by an aggregate of primary particles configured of crystallites, each secondary particle having a compressive breaking strength of 200 MPa or more and 500 MPa or less, and having a crystallite diameter in a (110) vector direction of 100 nm or more and 300 nm or less. 2 . The positive electrode active material for nonaqueous electrolyte secondary batteries according to claim 1 , wherein a volume average particle diameter (D50) of the secondary particle is 5 μm or more and 20 μm or less. 3 . A nonaqueous electrolyte secondary battery comprising: a positive electrode comprising a positive electrode active material, a negative electrode, and a nonaqueous electrolyte, wherein the positive electrode active material is represented by the general formula LiNi x Co y M (1-x-y) O 2 (where M consists of Mn and optionally at least one of the group consisting of magnesium (Mg), zirconium (Zr), molybdenum (Mo), tungsten (W), aluminum (Al), chromium (Cr), vanadium (V), cerium (Ce), titanium (Ti), iron (Fe), potassium (K), gallium (Ga) and indium (In), 0.3≤x<1.0, and 0<y≤0.5) and is configured of secondary particles each being formed by an aggregate of primary particles configured of crystallites, each secondary particle having a compressive breaking strength of 200 MPa or more and 500 MPa or less, and having a crystallite diameter in a (110) vector direction of 100 nm or more and 300 nm or less. 4 . The positive electrode active material for nonaqueous electrolyte secondary batteries according to claim 3 , wherein a volume average particle diameter (D50) of the secondary particle is 5 μm or more and 20 μm or less.
Positive electrodes · CPC title
of the type (MnO2)n-, e.g. Li(NixMn1-x)O2 or Li(MyNixMn1-x-y)O2 · CPC title
Physical characteristics, e.g. porosity, surface area · CPC title
of mixed oxides or hydroxides containing manganese for inserting or intercalating light metals, e.g. LiMn2O4 or LiMn2OxFy · CPC title
Solid solutions · CPC title
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