首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Correlation between structure, oxygen content and the multiferroic properties of Sr doped BiFeO3
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Correlation between structure, oxygen content and the multiferroic properties of Sr doped BiFeO3

机译:掺Sr的BiFeO3的结构,氧含量与多铁性之间的相关性

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In this study a series of Bi1-xSrxFeO3-delta (0 <= x <= 0.45) multiferroic samples have been prepared in order to study the effect of divalent Sr content on the crystal structure, dielectric and magnetic properties. Rietveld refinement of X-ray diffraction data revealed a structural phase transition from rhombohedral to pseudo cubic phase at x = 0.25. Mossbauer measurements showed that Fe ions retained their trivalent state while the Sr2+ ion substitution at Bi3+ site results in oxygen deficiency and in tetrahedral coordination for some of the Fe-O ions. For x >= 0.25 all the compositions are ferromagnetic with a strong magnetization enhancement between x = 0.15 and x = 0.25. The ferromagnetic onset is consistent with the structural transformation at x = 0.25 that is understood to destroy the parent antiferromagnetic cycloidal spin structure. Oxygen annealing was observed to result in a decrease of the magnetic moment suggesting that oxygen vacancies also contribute to the observed magnetization. The observed decrease in the values of magnetic coercivity at low temperatures is suggested to be indicative of magnetoelectric coupling in these multiferroic samples. The dielectric response depends in general on the crystal structure and oxygen vacancies while the x = 0.45 composition shows a marked anomaly in epsilon(T). This anomaly is explained in terms of relaxation effects originating presumably in nanoscale polar inhomogeneities. (C) 2014 Elsevier B.V. All rights reserved.
机译:在这项研究中,准备了一系列Bi1-xSrxFeO3-δ(0 <= x <= 0.45)多铁样品,以研究二价Sr含量对晶体结构,介电和磁性能的影响。 X射线衍射数据的Rietveld精炼显示,在x = 0.25时,结构从菱面体到伪立方相转变。 Mossbauer的测量结果表明,Fe离子保持其三价态,而Bi3 +位上的Sr2 +离子取代导致某些Fe-O离子缺氧和四面体配位。对于x> = 0.25,所有组成都是铁磁性的,在x = 0.15和x = 0.25之间具有强的磁化增强。铁磁起始点与x = 0.25处的结构转变相一致,这被认为会破坏母体反铁磁摆线自旋结构。观察到氧退火导致磁矩减小,表明氧空位也有助于观察到的磁化强度。建议在低温下观察到的磁性矫顽力值的下降表明这些多铁性样品中的磁电耦合。介电响应通常取决于晶体结构和氧空位,而x = 0.45的成分则显示出ε(T)的明显异常。可以根据可能源自纳米级极性不均匀性的弛豫效应来解释此异常。 (C)2014 Elsevier B.V.保留所有权利。

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