Positive electrode material for lithium secondary battery and process for producing the same
There is obtained a material of a positive electrode for a secondary lithium-ion cell having high cycle durability and high safety in high-voltage and high-capacity applications, which is a particulate positive electrode active material for a secondary lithium-ion cell represented by a general formula, Li a CO b A c B d O e F f (A is Al or Mg, B is a group-IV transition element, 0.90≦a≦1.10, 0.97≦b≦1.00, 0.0001≦c≦0.03, 0.0001≦d≦0.03, 1.98≦e≦2.02, 0≦f≦0.02, and 0.0001≦c+d≦0.03), where element A, element B and fluorine are evenly present in the vicinity of the particle surfaces.
1. A material of a positive electrode for a secondary lithium cell, comprising a particulate active material of positive electrode for a secondary lithium-ion cell represented by a general formula, Li a Co b A c B d O e F f , wherein A is Al or Mg, B is a group-IV transition element, 0.90≦a≦1.10, 0.97≦b≦1.00, 0.0001≦c≦0.03, 0.0001≦d≦0.03, 1.98≦e≦2.02, 0<f≦0.02, and 0.002≦c+d≦0.02, said element A, element B and fluorine are evenly present in a vicinity of particle surfaces; a single-component oxide of said element B is 20% or less; and no diffraction peaks are observed at 2θ of 28±1° in a high-sensitivity X-ray diffraction spectrum using Cu-Kα ray.
2. The material of a positive electrode for a secondary lithium cell according to claim 1 , wherein at least a part of said element represented by A or B contained in said particulate active material of the positive electrode for the secondary lithium-ion cell has substituted for cobalt atoms in the particles to form a solid solution.
3. The material of a positive electrode for a secondary lithium cell according to claim 1 , wherein the atomic ratio of said element A to said element B is 0.33≦c/d≦3.00, provided that 0.002≦c+d≦0.02.
4. The material of a positive electrode for a secondary lithium cell according to claim 1 , wherein said particulate active material of the positive electrode for the secondary lithium-ion cell consists of secondary particles each formed by coagulation of 10 or more primary particles, and an average particle diameter of said secondary particle is from 2 to 20 μm.