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Fabrication and magnetic properties of amorphous Co0.71Pt0.29 nanowire arrays

机译:非晶态Co0.71Pt0.29纳米线阵列的制备和磁性

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Highly ordered Co-0.71 Pt-0.29 alloy nanowire arrays have been fabricated successfully by direct current electro-deposition into the pores of a porous anodic aluminum oxide (AAO) template. SEM and TEM images reveal that the nanowires of array are uniform, well isolated, and parallel to one another. The aspect ratio of nanowires is over 200. XRD and EDS pattern indicates that amorphous Co-0.71 Pt-0.29 structure was formed during electro-deposition. In amorphous sample, magnetocrystal anisotropy is very small, therefore, shape anisotropy plays a dominant role which leads to strong perpendicular anisotropy. High coercivity (Hc = 1.7 kOe) and squareness (Mr/Ms) around 0.7 were obtained in the samples when the field was applied parallel to the axis of the nanowires. However, when it changed to polycrystalline structure after annealing, due to the competition of magnetocrystal anisotropy and shape anisotropy, the sample did not display perpendicular anisotropy. (C) 2004 Elsevier Ltd. All rights reserved.
机译:通过直流电沉积到多孔阳极氧化铝(AAO)模板的孔中,已经成功地制造了高度有序的Co-0.71 Pt-0.29合金纳米线阵列。 SEM和TEM图像显示,阵列的纳米线是均匀的,良好隔离的并且彼此平行。纳米线的长宽比超过200。XRD和EDS图谱表明在电沉积过程中形成了非晶Co-0.71 Pt-0.29结构。在非晶样品中,磁晶各向异性非常小,因此形状各向异性起主导作用,导致强的垂直各向异性。当平行于纳米线的轴施加磁场时,样品中获得了高矫顽力(Hc = 1.7 kOe)和矩形度(Mr / Ms)约0.7。但是,当退火后变为多晶结构时,由于磁晶各向异性和形状各向异性的竞争,样品没有表现出垂直各向异性。 (C)2004 Elsevier Ltd.保留所有权利。

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