Positive electrode active material for lithium ion secondary battery
Disclosed is a positive electrode active material for a lithium ion secondary battery, including lithium-transition metal composite oxide of a layer crystal structure, in which the lithium-transition metal composite oxide contains an element that improves conductivity of electrons in the lithium-transition metal composite oxide. Use of this positive electrode active material can improve cycle characteristics, high rate characteristics and thermal stability of lithium ion secondary batteries. Furthermore, by use of this positive electrode active material, gas generation in batteries can be decreased.
1. A positive electrode active material for a lithium ion secondary battery expressed by general formula
Li a Co 1−b M b O c X d S e
(wherein M represents at least one element selected from the group consisting of Ti, Al, V, Zr, Mg, Ca and Sr; X represents at least one selected from halogens; a represents a number satisfying 0.95≦a≦1.05; b represents a number satisfying 0<b≦0.10; c represents a number satisfying 1≦c≦2.5; d represents a number satisfying 0<d≦0.1; and e represents a number satisfying 0<e≦0.015).
2. The positive electrode active material for a lithium ion secondary battery according to claim 1 , wherein a specific surface area of the Li a CO 1−b M b O c X d S e is 0.2 to 2.0 m 2 /g.
3. The positive electrode active material for a lithium ion secondary battery according to claim 1 , wherein a proportion of particles of the Li a CO 1−b M b O c X d S e having a volume based particle size of 1 μm or less is 10 vol % or less based on total particles.
4. A lithium ion secondary battery comprising the positive electrode active material for a lithium ion secondary battery according to claim 1 , a negative electrode active material, an electrolytic solution and a separator.