Positive electrode active material and preparation method thereof, positive electrode plate, secondary battery, battery module, battery pack, and electric apparatus
US-2024429384-A1 · Dec 26, 2024 · US
US9680150B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9680150-B2 |
| Application number | US-201415113512-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jan 24, 2014 |
| Priority date | Jan 24, 2014 |
| Publication date | Jun 13, 2017 |
| Grant date | Jun 13, 2017 |
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To provide a means by which an electrical device such as a lithium ion secondary battery that has a positive electrode using a solid solution positive electrode active material can be provided with satisfactory performance in terms of rate characteristics while sufficiently making use of the high capacity characteristics that characterize solid solution positive electrode active materials. An electrical device that has a power generating element containing a positive electrode in which a positive electrode active material layer containing a positive electrode active material is formed on the surface of a positive electrode current collector, a negative electrode in which a negative electrode active material layer containing a negative electrode active material is formed on the surface of a negative electrode current collector, and a separator, in which the coating amount of the negative electrode active material layer is 3 to 11 mg/cm 2 , the negative electrode active material layer contains the negative electrode active material represented by the formula (1), the positive electrode active material layer contains the positive electrode active material represented by the formula (2) (solid solution positive electrode active material), and, as a solid solution positive electrode active material to be contained in the positive electrode active material layer, the material having composition represented by the formula (3) is used.
Opening claim text (preview).
The invention claimed is: 1. An electrical device which comprises a power generating element containing a positive electrode in which a positive electrode active material layer containing a positive electrode active material is formed on the surface of a positive electrode current collector, a negative electrode in which a negative electrode active material layer containing a negative electrode active material is formed on the surface of a negative electrode current collector, and a separator, wherein the coating amount of the negative electrode active material layer is 3 to 11 mg/cm 2 , the negative electrode active material layer contains a negative electrode active material which is represented by the following formula (1): [Mathematical formula 1] α (Si-containing alloy)+β (carbon material) (1) in the formula, α and β represent % by weight of each component in the negative electrode active material layer, and 80≦α+β≦98, 3≦α≦40, and 40≦β≦95, the positive electrode active material layer contains a positive electrode active material which is represented by the following formula (2): [Mathematical formula 2] e (solid solution positive electrode active material) (2) in the formula, e represents % by weight of each component in the positive electrode active material layer, and 80≦e≦98, and the solid solution positive electrode active material has a composition which is represented by the following formula (3): [Mathematical formula 3] Li 1.5 [Ni a Mn b Co c [Li] d [X] e ]O z (3) in the formula, X is at least one selected from a group consisting of Ti, Zr, and Nb, 0.01≦e≦0.4, a+b+c+d+e=1.5, 0.1≦d≦0.4, and 1.1≦[a+b+c+e]≦1.4, and z represents an oxygen number for satisfying the atomic valence. 2. The electrical device according to claim 1 , wherein the solid solution positive electrode active material has diffraction peaks indicating a rock salt type layered structure at 20 to 23°, 35 to 40° (101), 42 to 45° (104) and 64 to 65° (108)/65 to 66° (110) in the X ray diffraction (XRD) measurement. 3. The electrical device according to claim 1 , wherein the solid solution positive electrode active material does not substantially have a peak other than the diffraction peak attributed to the rock salt type layered structure in the X ray diffraction (XRD) measurement. 4. The electrical device according to claim 1 , wherein the solid solution positive electrode active material has three diffraction peaks at 35 to 40° (101) and one diffraction peak at 42 to 45° (104) in the X ray diffraction (XRD) measurement. 5. The electrical device according to claim 1 , wherein the solid solution positive electrode active material has diffraction peaks at 20 to 23°, 35.5 to 36.5° (101), 43.5 to 44.5° (104) and 64 to 65° (108)/65 to 66° (110) in the X ray diffraction (XRD) measurement. 6. The electrical device according to claim 1 , wherein the electrical device is a lithium ion secondary battery.
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