Powder as a positive active material, battery, and method for manufacturing a battery
A powder which has a hexagonal crystal structure and is used as a positive active material for a non-aqueous electrolyte rechargeable battery, and wherein the nominal composition of the positive active material is represented by Li a Ni b Co c Mn d Al e O 2 , the values of a, b, c, d, and e in the nominal equation fall within the ranges of 0.05≦a≦1.20, 0.25≦b≦0.93, 0.05≦c≦0.35, 0.01≦d≦0.35, 0.01≦e≦0.15, and 0.9≦b+c+d+e≦1.1, respectively, and the tap density of the powder lies 1.6 to 3.0 g/ml.
1 . A powder which has a hexagonal crystal structure and is used as a positive active material for a non-aqueous electrolyte rechargeable battery, and wherein
the nominal composition of said positive active material is represented by Li a Ni b Co c Mn d Al e O 2 ,
the values of a, b, c, d, and e in said nominal equation fall within the ranges of 0.05≦a≦1.20, 0.25≦b≦0.93, 0.05≦c≦0.35, 0.01≦d≦0.35, 0.01≦e≦0.15, and 0.9≦b+c+d+e≦1.1, respectively, and
the tap density of said powder lies 1.6 to 3.0 g/ml.
2 . A non-aqueous electrolyte rechargeable battery comprising the powder according to claim 1 as a positive active material.
3 . A method for manufacturing a non-aqueous electrolyte rechargeable battery which is characterized in using the powder according to claim 1 as a positive active material.