Particulate mixture, active material aggregate, cathode active material, cathode, secondary battery and methods for producing the same
A particulate mixture which can be used as a precursor of lithium transition metal silicate-type compound of small particle size and low crystallinity, is provided. It is a mixture of silicon oxide particulates, transition metal oxide particulates, and lithium transition metal silicate particulates, and its powder X-ray diffraction measurement shows diffraction peaks near 2θ=33.1° and near 2θ=35.7°, and said silicon oxide particulates and said transition metal oxide particulates are amorphous, and said lithium transition metal silicate particulates are in a microcrystalline or amorphous state.
1. A particulate mixture, which comprises silicon oxide particulates, transition metal oxide particulates, and lithium transition metal silicate particulates;
wherein the powder X-ray diffraction measurement of the particulate mixture shows diffraction peaks near 2θ=33.1° and near 2θ=35.7°;
said silicon oxide particulates and said transition metal oxide particulates are amorphous; and
said lithium transition metal silicate particulates are in a microcrystalline or amorphous state.
2. The particulate mixture according to claim 1 , wherein the full width at half maximum of the diffraction peak near 2θ=33.1° is 0.35° or more, and wherein the full width at half maximum of the diffraction peak near 2θ=35.7° is 0.35° or more.
3. The particulate mixture according to claim 1 , wherein said transition metal oxide particulates and said lithium transition metal silicate particulates contain at least two elements selected from Fe, Mn, Ti, Cr, V, Ni, Co, Cu, Zn, Al, Ge, Zr, Mo, or W.
4. A particulate mixture which comprises silicon oxide particulates, transition metal oxide particulates, and lithium transition metal silicate particulates wherein the powder X-ray diffraction measurement of the particulate mixture shows diffraction peaks near 2θ=33.1° and near 2θ=35.7°; said silicon oxide particulates and said transition metal oxide particulates are amorphous; said lithium transition metal silicate particulates are in a microcrystalline or amorphous state; and wherein part of the silicate in said lithium transition metal silicate particulates is replaced by metallate, phosphate or borate which does not emit oxygen.