Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
9834191 | Journal of Magnetism and Magnetic Materials | 2005 | 7 Pages |
Abstract
We review the main structural, magnetic and magnetotransport properties of the intriguing (AAâ²)2FeReO6 magnetic double perovskites. As the average cation size decreases, the crystallographic structure at room temperature evolves from cubic [(AAâ²)2=Ba2, Ba1.5Sr0.5, BaSr, Ba0.5Sr1.5] to tetragonal [(AAâ²)2=Sr2] and monoclinic [(AAâ²)2=Ca0.5Sr1.5, CaSr, Ca1.5Sr0.5, Ca2]. The Curie temperature increases anomalously from â303Â K for Ba2 to â522Â K for Ca2 in sharp contrast with the observed behaviour in the isostructural compounds (AAâ²)2FeMoO6. Other anomalous features in the (AAâ²)2FeReO6 series are: the large magnetic anisotropy, the large magnetoelastic coupling and the semiconducting behaviour of the monoclinic compounds. The monoclinic compounds undergo a structural/magnetic transition at TS below 125Â K. Three different magnetoresistance mechanisms have been identified: the intergrain negative magnetoresistance effect, which is present across the whole series of compounds, and in the case of the monoclinic compounds below TS a negative magnetoresistance effect associated to the melting of the low-temperature phase and a positive magnetoresistance effect only present in (AAâ²)2=Ca2 below Tâ¼50K.
Related Topics
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Authors
J.M. De Teresa, D. Serrate, J. Blasco, M.R. Ibarra, L. Morellon,