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Nanomorphology Effects in Semiconductors with Native Ferromagnetism: Hierarchical Europium (II) Oxide Tubes Prepared via a Topotactic Nanostructure Transition

机译:具有天然铁磁性的半导体中的纳米形态效应:通过全能纳米结构转变制备的分层Euro(II)氧化物管。

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Semiconductors with native ferromagnetism barely exist and defined nanostructures are almost unknown. This lack impedes the exploration of a new class of materials characterized by a direct combination of effects on the electronic system caused by quantum confinement effects with magnetism. A good example is EuO for which currently no reliable routes for nanoparticle synthesis can be established. Bottom-up approaches applicable to other oxides fail because of the labile oxidation state +II. Instead of targeting a direct synthesis, the two steps "structure control" and "chemical transformation" are separated. The generation of a transitional, hybrid nanophase is followed by its conversion into EuO under full conservation of all morphological features. Hierarchical EuO materials are now accessible in the shape of oriented nanodisks stacked to tubular particles. Magnetically, the coupling of either vortex or onion states has been found. An unexpected temperature dependence is governed by thermally activated transitions between these states.
机译:具有天然铁磁性的半导体几乎不存在,并且几乎不知道定义的纳米结构。这种缺乏阻碍了对新型材料的探索,这些材料的特征是量子约束效应与磁性对电子系统的影响直接结合。 EuO就是一个很好的例子,目前尚无法建立可靠的纳米颗粒合成途径。由于不稳定的氧化态+ II,适用于其他氧化物的自下而上方法失败。代替靶向直接合成,将“结构控制”和“化学转化”两个步骤分开。在完全保留所有形态特征的情况下,生成过渡的杂化纳米相,然后将其转化为EuO。分层EuO材料现在可以以堆叠成管状颗粒的定向纳米盘的形式获得。在磁性上,已经发现涡旋状态或洋葱状态的耦合。出乎意料的温度依赖性是由这些状态之间的热激活转变控制的。

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