Positive electrode active material for non-aqueous electrolyte secondary battery and method for producing the same
A positive electrode active material for a non-aqueous electrolyte secondary battery that includes a lithium transition metal composite oxide having a spinel structure and containing nickel and manganese is provided. The positive electrode active material includes a first surface region having a chemical composition with a molar ratio of nickel to manganese of 0.1 or less on the surface of the lithium transition metal composite oxide.
1. A positive electrode active material for a non-aqueous electrolyte secondary battery, the active material comprising:
a lithium transition metal composite oxide having a spinel structure and containing nickel and manganese, the lithium transition metal composite oxide having a surface including a first surface region and a second surface region,
wherein the first surface region has a chemical composition with a molar ratio of nickel to manganese of 0.1 or less,
wherein the first surface region has a thickness of from 0.15 μm to 1 μm,
wherein the first surface region contains a lithium manganese oxide,
wherein the first surface region is formed by solid-solving lithium into the lithium transition metal composite oxide, and
wherein the second surface region has a chemical composition with a molar ratio of nickel to manganese of 0.17 or more.
2. The positive electrode active material according to claim 1 , further comprising a second surface region having a chemical composition with a molar ratio of nickel to manganese of 0.2 or more.
3. The positive electrode active material according to claim 2 , wherein the first surface region has a chemical composition with a ratio of a number of moles of oxygen atoms to a total number of moles of metals other than lithium of from 2.4 to 3.8.
4. The positive electrode active material according to claim 2 , wherein the lithium transition metal composite oxide has a molar ratio of nickel of 0.3 to 0.6 when a total number of oxygen atoms in a composition of the lithium transition metal composite oxide is 4.
5. The positive electrode active material according to claim 4 , wherein the lithium transition metal composite oxide has a molar ratio of manganese of 1.2 to 1.7 when the total number of oxygen atoms in the composition of the lithium transition metal composite oxide is 4.
6. The positive electrode active material according to claim 2 , wherein the lithium transition metal composite oxide has a chemical composition represented by formula below:
Li x Ni p Mn q M 1 r O 4
where x, p, q, and r satisfy 1≤x≤1.4, 0.3≤p≤0.6, 1.2≤q≤1.7, 0≤r≤0.2, and p+q+r≤2; and M 1 is at least one selected from the group consisting of Al, Mg, Si, Ti, Cr, Fe, Co, Cu, Zn, and Ga.
7. The positive electrode active material according to claim 1 , wherein the first surface region has a chemical composition with a ratio of a number of moles of oxygen atoms to a total number of moles of metals other than lithium of from 2.4 to 3.8.
8. The positive electrode active material according to claim 1 , wherein the lithium transition metal composite oxide has a chemical composition represented by formula below:
Li x Ni p Mn q M 1 r O 4
where x, p, q, and r satisfy 1≤x≤1.4, 0.3≤p≤0.6, 1.2≤q≤1.7, 0≤r≤0.2, and p+q+r≤2; and M 1 is at least one selected from the group consisting of Al, Mg, Si, Ti, Cr, Fe, Co, Cu, Zn, and Ga.
9. The positive electrode active material according to claim 1 , wherein the lithium transition metal composite oxide has a molar ratio of nickel of 0.3 to 0.6 when a total number of oxygen atoms in a composition of the lithium transition metal composite oxide is 4.
10. The positive electrode active material according to claim 1 , wherein the lithium transition metal composite oxide has a molar ratio of manganese of 1.2 to 1.7 when a total number of oxygen atoms in a composition of the lithium transition metal composite oxide is 4.