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首页> 外文期刊>Nanotechnology >Tuning the magnetic anisotropy of CoNi nanowires: Comparison between single nanowires and nanowire arrays in hard-anodic aluminum oxide membranes
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Tuning the magnetic anisotropy of CoNi nanowires: Comparison between single nanowires and nanowire arrays in hard-anodic aluminum oxide membranes

机译:调整CoNi纳米线的磁各向异性:硬阳极氧化铝膜中单根纳米线和纳米线阵列之间的比较

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摘要

Co_xNi_(1-x) alloy nanowires with varying Co content (0≤x≤0.95), having a diameter of 130nm and length of around 20μm, are synthesized by template-assisted electrodeposition into the nanopores of SiO_2 conformal coated hard-anodic aluminum oxide membranes. The magneto-structural properties of both single isolated nanowires and hexagonally ordered nanowire arrays of CoNi alloys are systematically studied by means of magneto-optical Kerr effect magnetometry and vibrating sample magnetometry, respectively, allowing us to compare different alloy compositions and to distinguish between the magnetostatic and magnetocrystalline contributions to the effective magnetic anisotropy for each system. The excellent tunable soft magnetic properties and magnetic bistability exhibited by low Co content CoNi nanowires indicate that they might become the material of choice for the development of nanostructured magnetic systems and devices as an alternative to FeNi alloy based systems, being chemically more robust. Furthermore, Co contents higher than 51at.% allow us to modify the magnetic behavior of Co-rich nanowires by developing well controlled magnetocrystalline anisotropy, which is desirable for data storage applications.
机译:通过模板辅助电沉积到SiO_2共形包覆硬阳极氧化铝纳米孔中,合成了直径为130nm,长度约为20μm的Co含量(0≤x≤0.95)的Co_xNi_(1-x)合金纳米线。膜。分别通过磁光克尔效应磁强法和振动样品磁强法系统地研究了CoNi合金的单个隔离纳米线和六角有序纳米线阵列的磁结构性质,这使我们能够比较不同的合金成分并区分静磁和磁晶对每个系统的有效磁各向异性的贡献。低Co含量的CoNi纳米线表现出优异的可调谐软磁性能和双稳态性,表明它们可能成为替代FeNi合金基系统的纳米结构磁系统和器件开发的首选材料,并且化学稳定性更强。此外,高于51at。%的Co含量使我们能够通过开发良好控制的磁晶各向异性来改变富Co纳米线的磁行为,这对于数据存储应用而言是理想的。

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