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首页> 外文期刊>Journal of Materials Science >The effects of composition and thermal treatment on the magnetic properties of Fe100-xCox nanowire arrays based on AAO templates
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The effects of composition and thermal treatment on the magnetic properties of Fe100-xCox nanowire arrays based on AAO templates

机译:组成和热处理对基于AAO模板的Fe100-xCox纳米线阵列磁性能的影响

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A series of Fe100-xCox nanowire arrays with about 6.0 mu m in length and 60 nm in diameter have been fabricated successfully by AC deposition of Fe and Co atoms into anodic aluminum oxide (AAO) templates. Samples with different composition could be obtained by adjusting the concentration ratio of Fe2+ and Co2+ in the solution of the electrolyte. The composition of the samples were determined by atomic absorption spectroscopy. Structural analysis was performed using scanning electron microscopy and X-ray diffraction. The magnetic properties of the samples were examined by vibrating sample magnetometry. The effects of composition and thermal treatment on the magnetic properties of the nanowire arrays have been examined. XRD shows that the nanowires have a body-centred-cubic (bcc) structure with a preferred orientation of the < 110 > axis parallel to the nanowires. When x is between 80 and 90, nanowires undergo a phase transformation alpha -> gamma which is very different from Fe-Co bulk alloy. Furthermore, a localized magnetization reversal mechanism of the nanowire arrays was conformed. It is also found that the magnetic properties of the arrays are critically dependent on the compositions and thermal treatment. With suitable choices of these factors, a kind of soft ferromagnetic film can be produced while maintaining a high coercivity and squareness. (c) 2006 Springer Science + Business Media, Inc.
机译:通过将Fe和Co原子AC沉积到阳极氧化铝(AAO)模板中,成功制造了一系列长约6.0μm,直径约60 nm的Fe100-xCox纳米线阵列。通过调节电解质溶液中Fe2 +和Co2 +的浓度比可以得到具有不同组成的样品。样品的组成通过原子吸收光谱法测定。使用扫描电子显微镜和X射线衍射进行结构分析。通过振动样品磁力法检查样品的磁性能。已经检查了组成和热处理对纳米线阵列的磁性的影响。 XRD显示纳米线具有体心立方(bcc)结构,其<110>轴的优选取向平行于纳米线。当x在80到90之间时,纳米线经历相变α->γ,这与Fe-Co块状合金非常不同。此外,符合纳米线阵列的局部磁化反转机理。还发现阵列的磁性能关键取决于组成和热处理。通过适当选择这些因素,可以制造一种软的铁磁膜,同时保持高的矫顽力和垂直度。 (c)2006年Springer Science + Business Media,Inc.

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