Suppression of phase transitions at low temperature by chromium substitution in vanadium spinel Fe(V1−xCrx)2O4
Synchrotron powder diffraction, magnetization, and specific heat measurements have been used to investigate the structural and magnetic phase transitions in the spinel-type vanadate Fe(V1−xCrx)2O4 (0.0 x 1.0). We observed five different transitions in our polycrystalline samples. The canted-...
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Veröffentlicht in: | Journal of physics. Condensed matter 2016-06, Vol.28 (29), p.296001-296001 |
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Sprache: | eng |
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Zusammenfassung: | Synchrotron powder diffraction, magnetization, and specific heat measurements have been used to investigate the structural and magnetic phase transitions in the spinel-type vanadate Fe(V1−xCrx)2O4 (0.0 x 1.0). We observed five different transitions in our polycrystalline samples. The canted-type ferrimagnetic phase transition accompanied by the lattice distortion was suppressed by Cr substitution (x = 0.2). Additionally, high-resolution synchrotron powder diffraction revealed that the low-temperature orthorhombic phase appears in FeV2O4 below 30 K and disappears by subtle Cr doping. In contrast, for x 0.7, we observed a different magnetic transition of possibly conical-type ferrimagnetic ordering that did not induce significant lattice distortion at the transition temperature. We performed structural refinements for low-temperature phases and suggest that the crystal system of Fe(V1−xCrx)2O4 at 15K is an orthorhombic lattice for all x values. In the orthorhombic phase, a unique behaviour was observed, with the lattice constants a and b approaching each other as Cr doping increased. This behaviour can be explained by the change of orbitally ordered states of the Fe2+ ions. |
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ISSN: | 0953-8984 1361-648X |
DOI: | 10.1088/0953-8984/28/29/296001 |