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Ordered Ni nanohole arrays with engineered geometrical aspects and magnetic anisotropy

机译:具有工程几何形状和磁各向异性的有序Ni纳米孔阵列

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摘要

Ni nanohole arrays are prepared by a replication process involving sputtering, polymer molding pressing, and electroplating techniques, using anodic alumina membranes as templates. Nanohole diameter to interhole distance ratio is engineered by suitable template processing. From the analysis of the magnetization curves for increasing nanohole diameter, it is concluded that coercivity increases due to the pinning of domain walls to nanoholes, while in-plane anisotropy decreases owing to local shape anisotropy effects.
机译:通过使用阳极氧化铝膜作为模板,通过涉及溅射,聚合物模压和电镀技术的复制工艺来制备Ni纳米孔阵列。纳米孔直径与孔间距离之比是通过适当的模板处理设计的。从增加纳米孔直径的磁化曲线的分析可以得出结论,由于畴壁钉扎到纳米孔,矫顽力增加,而由于局部形状各向异性效应,面内各向异性降低。

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