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FINITE-SIZE EFFECTS IN NANOSCALED MULTIFERROICS

机译:纳米级多二分子的有限效应

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We present studies of single-phase multiferroic materials in nanoparticle or nanoplate form, where size effects modify the long range magnetic structure and hence influence the magnetic properties. Size effects as isolated here, are of particular relevance to understand the interplay between magnetic and ferroelectric properties in heterogeneous, multi-phase multiferroic structures. Bulk multiferroic BiMnO3 shows ferromagnetic ordering below 105 K, but few characterization attempts have been performed on nanoscaled material. We have synthesized BiMnO3 nanoplates and characterized the structure, composition, morphology and magnetic properties. Ferromagnetic behavior is not observed in the nanoplates, in contrast to the bulk, indicative of finite size effects. We have also synthesized BiFeO3 nanoparticles (characterized by XRD, EDS and magnetometry), which exhibit ferromagnetism with spin-glass-like behavior, as a result of reduced dimensionality. Bulk perovskite BiFeO3 instead shows antiferromagnetism. The difference in magnetic behavior for nanoparticles compared to bulk behavior, is, in both cases, attributable to finite-size effects.
机译:我们在纳米颗粒或纳米板形式中展示了单相多体材料,其中尺寸效应改变长距离磁性结构,因此影响磁性。这里的尺寸效果与在异质多相多相组织中的磁性和铁电特性之间的相互作用之间特别相关。散装多二二聚体BIMNO3显示105 k以下的铁磁性排序,但是在纳米级材料上进行了很少的表征尝试。我们已经合成BimnO3纳米板,其特征在于结构,组成,形态和磁性。与散装相比,纳米板中未观察到铁磁性行为,表明有限尺寸效应。我们还合成了BifeO3纳米颗粒(以XRD,EDS和磁体)为特征,其具有旋转玻璃样行为的铁磁性,其含量降低。 Bulk Perovskite Bifeo3反而显示反铁磁。与批量行为相比,纳米颗粒的磁性行为的差异是在两种情况下,可归因于有限尺寸的效应。

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