High pressure induced spin state crossover in Sr2CaYCo4O10.5

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Abstract

The layered cobaltite Sr2CaYCo4O10.5 with formal average cobalt oxidation state close to 3+ has been studied as functions of both temperature and pressure up to 4GPa by neutron powder diffraction (NPD). The crystal structure is shown to have tetragonal symmetry (space group I4/mmm; 2ap × 2ap × 4ap superstructure), and the magnetic structure at ambient pressure is found to be G-type antiferromagnetic with TN close to 310 K. The magnetic moments within the CoO6 octahedral layers and anion-deficient CoO4.5 layers are 1.2μB and 2.8μB, respectively. At 25K, and applied pressure of 3.5 GPa is sufficient to completely suppress a long-range magnetic order. This result is interpreted in terms of a pressure-induced high-to-low spin state crossover of the Co3+ ions.

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Sikolenko, V., Troyanchuk, I., Bushinsky, M., Efimov, V., Keller, L., White, J. S., … Schorr, S. (2015). High pressure induced spin state crossover in Sr2CaYCo4O10.5. Journal of Physics Condensed Matter, 27(4). https://doi.org/10.1088/0953-8984/27/4/046005

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