On the Magnetic Insulating States, Spin Frustration, and Dominant Spin Exchange of the Ordered Double-Perovskites Sr2CuOsO6 and Sr2NiOsO6: Density …
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American Chemical Society
Abstract
The ordered double-perovskites Sr2MOsO6 (M = Cu, Ni) consisting of 3d and 5d transition-metal magnetic ions (M2+ and Os6+, respectively) are magnetic insulators; the magnetic susceptibilities of Sr2CuOsO6 and Sr2NiOsO6 obey the Curie−Weiss law with dominant antiferromagnetic and ferromagnetic interactions, respectively, and the zero-field-cooled and field-cooled susceptibility curves of both compounds diverge below ∼20 K. In contrast, the available density functional studies predicted both Sr2CuOsO6 and Sr2NiOsO6 to be metals. We resolved this discrepancy on the basis of systematic density functional calculations. The magnetic insulating states of Sr2MOsO6 are found only when a substantially large on-site repulsion is employed for the Os atom, although it is a 5d element. The cause for the divergence between the zero-field-cooled and field-cooled susceptibility curves in both compounds and the reason for the difference in their dominant magnetic interactions were investigated by examining their spin exchange interactions.
Citation
Tian, C., Wibowo, A. C., zur Loye, H. C., & Whangbo, M. H. (2011). On the Magnetic Insulating States, Spin Frustration, and Dominant Spin Exchange of the Ordered Double-Perovskites Sr2CuOsO6 and Sr2NiOsO6: Density Functional Analysis. Inorganic chemistry, 50(9), 4142-4148.
