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Synthesis, Crystal Structure, and Magnetic Properties of a Novel Layered Manganese Oxide Sr2MnGaO5+δ
Authors:A. M. Abakumov   M. G. Rozova   B. Ph. Pavlyuk   M. V. Lobanov   E. V. Antipov   O. I. Lebedev   G. Van Tendeloo   O. L. Ignatchik   E. A. Ovtchenkov   Yu. A. Koksharov  A. N. Vasil'ev
Affiliation:a Department of Chemistry, Moscow State University, Moscow, 119899, Russiaf1;b EMAT, University of Antwerp (RUCA), Groenenborgerlaan 171, B-2020, Antwerp, Belgium;c Department of Physics, Moscow State University, Moscow, 119899, Russia
Abstract:
New Sr2MnGaO4.97 complex oxide was synthesized by solid state reaction in sealed silica tubes at 950–1000°C. The Sr2MnGaO4.97 crystal structure was refined from X-ray powder diffraction data. Sr2MnGaO4.97 is based on the Ima2 brownmillerite-type structure with apically elongated MnO6 octahedra due to a Jahn–Teller effect. Electron diffraction and high-resolution electron microscopy showed that local ordering of the left-and right-hand chains of GaO4 tetrahedra in Sr2MnGaO4.97 leads to a superstructure with a doubling of the b parameter of the orthorhombic unit cell. The formal oxidation state of Mn (VMn) can be varied by thermal treatments at elevated oxygen pressure (450°C, 20 bar of O2). The oxygen insertion induces a structure transformation in oxidized Sr2MnGaO5.47 material with the formation of a tetragonal perovskite-like structure (aap, c2cp) with oxygen vacancies located in the Ga layers. The oxidation is accompanied by a significant compression of the Mn–O apical distances and a suppression of the Jahn–Teller deformation. Both Sr2MnGaO4.97 and Sr2MnGaO5.47 can probably be treated as canted antiferromagnets with TN=150 and 80 K, respectively.
Keywords:Sr2MnGaO5+δ     synthesis   crystal structure   oxygen nonstoichiometry.
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