首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Electrodeposited Fe-P nanowire arrays in hard-anodic aluminum oxide templates with controllable magnetic properties by thermal annealing
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Electrodeposited Fe-P nanowire arrays in hard-anodic aluminum oxide templates with controllable magnetic properties by thermal annealing

机译:通过热退火在具有可控磁性能的硬阳极氧化铝模板中电沉积Fe-P纳米线阵列

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摘要

The highly ordered uniform amorphous Fe-P alloy nanowire arrays are fabricated by potentiostatic electrodeposition in hard-anodic aluminum oxide (H-AAO) templates with diameter and pore distance about 110 nm and 265 nm, respectively. The deposited Fe-P nanowire arrays gradually change from crystalline to amorphous phase as the phosphorus content in the nanowire arrays increases. The phosphorus content and nanowire growth rate are sensitive to the applied potential and sodium hypophosphite concentration in electrolyte. Subsequently, the as-deposited amorphous Fe-P alloy nanowire arrays are annealed with different temperature. And the original and annealed samples reveal different crystallographic structures and magnetic properties. The results show that both the coercivity and squareness have been improved significantly, while the magnetic anisotropy become weak with the increasing of annealing temperature, which mainly attributes to the competition of shape anisotropy, stress anisotropy and the strengthening of magnetocrystalline anisotropy. (C) 2016 Elsevier B.V. All rights reserved.
机译:通过在硬质阳极氧化铝(H-AAO)模板中恒电位电沉积分别具有约110 nm和265 nm的孔距来制备高度有序的均匀非晶Fe-P合金纳米线阵列。随着纳米线阵列中磷含量的增加,沉积的Fe-P纳米线阵列逐渐从晶相变为非晶相。磷含量和纳米线生长速率对施加的电势和电解质中的次磷酸钠浓度敏感。随后,将沉积的非晶态Fe-P合金纳米线阵列在不同温度下退火。原始和退火样品显示出不同的晶体学结构和磁性能。结果表明,随着退火温度的升高,矫顽力和矩形度均得到明显改善,而磁各向异性变弱,这主要归因于形状各向异性,应力各向异性和磁晶各向异性的增强。 (C)2016 Elsevier B.V.保留所有权利。

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