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Tunable single-phase magnetic behavior in chemically synthesized AFeO(3)-MFe2O4 (A = Bi or La, M = Co or Ni) nanocomposites

机译:可调单相磁行为化学合成AFeO (3) -MFe2O4 (= Bi或La, M = Co或Ni) nanocomposites

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摘要

The properties of magnetic nanocomposites rely strongly on the interplay between those of the constituent components. When the individual components themselves are complex systems belonging to the family of correlated electron oxide systems which typically exhibit exotic physical properties, it becomes nontrivial to customize the properties of the nanocomposite. In this paper, we demonstrate an easy, but effective method to synthesize and tune the magnetic properties of nanocomposites consisting of correlated electron oxide systems as the individual components. Our method is based on a novel synthesis technique by which the two components of the nanocomposite can be directly integrated with each other, yielding homogeneous samples on the nanoscale with magnetic behavior reminiscent of a single phase. We illustrate our method using multiferroic BiFeO3 (BFO) and LaFeO3 (LFO) as the major phase (i.e., matrix), and MFe2O4 (M = Co2+ or Ni2+) as the embedded magnetic phase. Furthermore, we show that by a proper selection of the second phase in the nanocomposite, it is possible to customize the magnetic properties of the matrix. We illustrate this by choosing CoFe2O4 and NiFe2O4, two oxides with widely differing magnetic anisotropies, as the embedded phase, and demonstrate that the coercivity of BFO and LFO can be increased or decreased depending on the choice of the embedded phase in the nanocomposite.
机译:磁性纳米复合材料的性质强烈的相互作用组成组件。组件本身是复杂的系统属于家族相关的电子氧化系统通常具有异国情调物理性质,它成为重要的自定义属性的纳米复合材料。这篇文章中,我们演示一个简单,但有效方法合成和优化磁组成的纳米复合材料的性质随着氧化相关的电子系统各个组件。这两个新颖的合成技术纳米复合材料可以直接的组件相互结合,产生均匀样品在纳米尺度的磁行为让人想起一个阶段。方法用多铁性BiFeO3(拍频振荡器)和LaFeO3(LFO)作为主要阶段(例如,矩阵)MFe2O4 (M = Co2 +或Ni2 +)嵌入磁阶段。第二阶段的正确选择纳米复合材料,可以定制磁性的矩阵。通过选择CoFe2O4和NiFe2O4,二氧化物与广泛不同的磁各向异性嵌入阶段,和证明矫顽力的拍频振荡器和LFO可以增加或根据嵌入式的选择减少相的纳米复合材料。

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