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The crystal structures of the spinels Co 3 O 4 , NiCo 2 O 4 , Co 3 S 4 , and NiCo 2 S 4 were refined from X-ray and neutron powder data. Their lattice parameters at room temperature and the positional parameters of the oxygen and sulfur atoms were: Co 3 O 4 , 8.0835 ± 6 Å, 0.2640 ± 8; NiCo 2 O 4 , 8.114 ± 14 Å, 0.2583 ± 34; Co 3 S 4 , 9.4055 ± 12 Å, 0.2591 ± 5; NiCo 2 S 4 , 9.3872 ± 7 Å, 0.2591 ± 3. The thermal stabilities of the two oxides in air and in oxygen at 1 atm were investigated by thermogravimetric analysis and differential thermal analysis, and the magnetization of NiCo 2 O 4 was measured down to 4.2 °K in fields up to 11.70 kOe. From neutron diffraction NiCo 2 O 4 . was found to be inverse, while NiCo 2 S 4 was shown to be normal. The results of the magnetization measurements and the neutron-diffraction patterns at 111 and 393 °K were found to be equally consistent with the magnetic structure proposed for NiCo 2 O 4 by Blasse, Co 2+ Ni 3+ Co 3+ O 4 (Co 2+ in a high-spin and Ni 3+ andCo 3+ in low-spin states), and with Co 3+ Ni 2+ Co 3+ O 4 (Co 3+ in 8(a) in a high-spin and Co 3+ in 16(d) in a low-spin state). The sublattice magnetizations were not completely aligned even at 4.2 °K; the net magnetic moment derived from the magnetization measurements was only 1.25 μ B , which is lower than the value of 2 μ B expected from either model. At 111 °K the moments of the ions in the tetrahedral and octahedral sites were estimated to be 1.9 ± 0.2 and −0.5 ± 0.1 bohr magnetons respectively.
Knop et al. (Fri,) studied this question.