High voltage laminar cathode materials for lithium rechargeable batteries, and process for making the same
View Patent ↗Intercalation cathode materials especially suited for use in high-voltage, high-energy lithium rechargeable batteries, having the formulae Li[Li( 1-2x )/ 3 M y Mn( 2−x )/ 3 Ni( x-y )O 2 , where 0<x<0.5, 0<y≦0.25, x>y, and M is one or more divalent cations from Ca, Cu, Mg, and Zn. A process for making such materials is also provided.
1. An intercalation cathode material having the formula Li[Li( 1-2x )/ 3 M y Mn( 2−x )/ 3 Ni (x-y) ]O 2 , where 0.1<x<0.4 and 0<y<0.15, x>y, and M is one or more divalent cations selected from Ca, Cu, Mg and Zn.
2. A cathode material according to claim 1 , wherein M is copper, 0.15≦x≦0.35, and 0.02≦y≦0.1.
3. A method for making an improved layered lithium manganese nickel oxide cathode material of the formula Li[Li( 1-2x )/ 3 M y Mn( 2−x )/ 3 Ni( x-y )]O 2 , where 0.1<x<0.4 and 0<y<0.15, x>y. and M is one or more divalent cations selected from Ca, Cu. Mg and Zn, comprising forming an intimate mixture in the correct proportions of the precursor salts, oxides or both of lithium, manganese, nickel and one or more of the divalent cations of Ca, Cu. Mg and Zn, then subjecting the mixture one or more times to a temperature of about 950° C. or greater or at least two times to a temperature of less than 950° C., whereby a phase-pure layered lithium manganese nickel oxide is formed including the incorporated element or elements.
4. A method according to claim 3 , wherein the mixture of precursor salts or oxides is reacted in one heating step at a temperature between 950° C. and 1050° C.