Structure and magnetic properties of a LaSrCrO single crystal
arXiv:2402.08940 · doi:10.1016/j.physb.2024.415776
Abstract
We have successfully grown large and good-quality single crystals of the LaSrCrO compound using the floating-zone method with laser diodes. We investigated the crystal quality, crystallography, chemical composition, magnetic properties and the oxidation state of Cr in the grown single crystals by employing a combination of techniques, including X-ray Laue and powder diffraction, scanning electron microscopy, magnetization measurements, X-ray photoelectron spectroscopy and light absorption. The LaSrCrO single crystal exhibits a single-phase composition, crystallizing in a trigonal structure with the space group at room temperature. The chemical composition was determined as LaSrCrO, indicating a significant chromium deficiency. Upon warming, we observed five distinctive characteristic temperatures, namely 21.50(1) K, 34.98(1) K, 117.94(1) K, 155.01(1) K, and 271.80(1) K, revealing five distinct magnetic anomalies. Our magnetization study allows us to explore the nature of these anomalies. Remarkably, the oxidation state of chromium in the single-crystal LaSrCrO, characterized by a band gap of 1.630(8) eV, is exclusively attributed to Cr ions, making a departure from the findings of previous studies on polycrystalline materials.
24 pages, 10 figures
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