Solid‐State Redox Reactions of LiNi1 / 2Co1 / 2 O 2 ( R 3m ) for 4 Volt Secondary Lithium Cells
摘要
LiNi 1 / 2 Co 1 / 2 O 2 ( R 3 ¯ m ; a = 2.84 Å , c = 14.1 Å in hexagonal setting) whose parent structure was a solid solution of LiNiO 2 and LiCoO 2 was prepared and examined in a nonaqueous lithium cell. The oxidation of LiNi 1 / 2 Co 1 / 2 O 2 and reduction of □ Ni 1 / 2 Co 1 / 2 O 2 proceeded reversibly in the voltage range above 3.5 V. X‐ray diffractional examinations indicated the reaction proceeded in a topotactic manner. During the oxidation of LiNi 1 / 2 Co 1 / 2 O 2 , the c ‐ axis dimension elongated from 14.1 to 14.5 Å and the a ‐ axis shortened from 2.84 to 2.80 Å almost linearly as a function of x in Li 1 − x Ni 1 / 2 Co 1 / 2 O 2 until x reached about 0.5. Consequently, the lattice volume remained almost invariable at 98.5 Å 3 . Further oxidation resulted in the shrinkage of the c ‐ axis dimension and the elongation of the a ‐ axis . Detained open‐circuit voltage measurements also were carried out. The open‐circuit voltages varied as a function of x in Li 1 − x Ni 1 / 2 Co 1 / 2 O 2 following a hyperbolic tangent curve, not an S‐shaped Nernstian curve. The composition‐dependent open‐circuit voltage curve together with the XRD observations indicated that the reaction proceeded in a homogeneous phase. Differences and similarities of the solid‐state redox reactions among LiNiO 2 , LiNi 1 / 2 Co 1 / 2 O 2 , and LiCoO 2 were discussed.