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首页> 外文期刊>Journal of nanoscience and nanotechnology >Growth and Magnetic Characterization of 1D Permalloy Nanowires Using Self Developed Anodic Aluminium Oxide Templates
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Growth and Magnetic Characterization of 1D Permalloy Nanowires Using Self Developed Anodic Aluminium Oxide Templates

机译:使用自行开发的阳极氧化铝模板对一维坡莫合金纳米线的生长和磁性进行表征

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摘要

1D Permalloy refers to arrays of nanowires (NWs) made of an alloy of Ni and Fe with 80 and 20 at% composition respectively. In the present work 1D Permalloy NWs arrays were fabricated into the pores of self engineered Anodic Aluminium Oxide (AAO) templates by a simple electrodeposition technique (EDT). By varying the anodization voltage and parameters of the electrolyte solutions we developed AAO templates with different average pore diameters (40 nm to 70 nm) and developed 1D Permalloy NWs within them. Structural characterization of AAO templates and 1D Permalloy NWs were performed by Transmission and Scanning Electron Microscopy (TEM and SEM respectively). X-ray diffraction (XRD) studies of 1D Permalloy NWs showed their fcc crystalline structure and the AAO template was found to be amorphous in nature. Magnetic studies showed the 1D Permalloy NWs arrays to have strong shape anisotropy, and the easy axis was found to be parallel to the NWs axis. We studied the angular dependence of magnetic properties of the NWs. Coercivity (H-C) and remanence (M-r/M-s) measured along the NWs axis were found to be higher than those measured in a direction perpendicular to the NWs axis. 1D Permalloy NWs developed in this work have the potential to be used in magnetic recording devices.
机译:一维坡莫合金是指由分别具有80和20 at%的成分的Ni和Fe合金制成的纳米线(NWs)阵列。在本工作中,通过简单的电沉积技术(EDT)将一维坡莫合金NWs阵列制作到自工程阳极氧化铝(AAO)模板的孔中。通过改变阳极氧化电压和电解质溶液的参数,我们开发了具有不同平均孔径(40 nm至70 nm)的AAO模板,并在其中开发了1D坡莫合金NW。通过透射和扫描电子显微镜(分别为TEM和SEM)对AAO模板和1D坡莫合金NW进行结构表征。一维坡莫合金NW的X射线衍射(XRD)研究表明它们的fcc晶体结构,而AAO模板本质上是无定形的。磁性研究表明,一维坡莫合金NWs阵列具有很强的形状各向异性,并且发现易轴与NWs轴平行。我们研究了NWs磁性能的角度依赖性。发现沿着NWs轴测量的矫顽力(H-C)和剩磁(M-r / M-s)高于在垂直于NWs轴的方向测量的矫顽力和剩磁(M-r / M-s)。在这项工作中开发的一维坡莫合金NW具有在磁记录设备中使用的潜力。

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