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Synthesis and magnetic properties of cobalt-iron/cobalt-ferrite soft/hard magnetic core/shell nanowires

机译:钴 - 铁/钴铁氧体软/硬磁芯/壳纳米线的合成和磁性

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摘要

A straightforward method for the synthesis of CoFe2.7/CoFe2O4 core/shell nanowires is described. The proposed method starts with a conventional pulsed electrodeposition procedure on alumina nanoporous template. The obtained CoFe2.7 nanowires are released from the template and allowed to oxidize at room conditions over several weeks. The effects of partial oxidation on the structural and magnetic properties were studied by x-ray spectrometry, magnetometry, and scanning and transmission electron microscopy. The results indicate that the final nanowires are composed of 5 nm iron-cobalt alloy nanoparticles. Releasing the nanowires at room conditions promoted surface oxidation of the nanoparticles and created a CoFe2O4 shell spinel-like structure. The shell avoids internal oxidation and promotes the formation of bi-magnetic soft/hard magnetic core/shell nanowires. The magnetic properties of both the initial single-phase CoFe2.7 nanowires and the final core/shell nanowires, reveal that the changes in the properties from the array are due to the oxidation more than effects associated with released processes ( disorder and agglomeration).
机译:描述了一种用于合成COFE2.7 / COFE2O4核/壳纳米线的直接方法。所提出的方法以氧化铝纳米孔模板的传统脉冲电沉积过程开始。所获得的COFE2.7纳米线被从模板中释放,并在几周内在室内条件下氧化。通过X射线光谱,磁力测定和扫描和透射电子显微镜研究了部分氧化对结构和磁性的影响。结果表明,最终纳米线由5nM铁 - 钴合金纳米颗粒组成。在室内条件下释放纳米线促进纳米颗粒的表面氧化,并产生COFE2O4壳尖晶石状结构。壳避免内部氧化并促进了双磁性软/硬磁芯/壳纳米线的形成。初始单相COFE2.7纳米线和最终芯/壳纳米线的磁性表明,来自阵列的性质的变化是由于氧化超过与释放过程(紊乱和附聚相关的效果)。

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