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Enhanced magnetic performance of aligned wires assembled from nanoparticles: from nanoscale to macroscale

机译:从纳米颗粒组装的对齐线的增强磁性性能:从纳米尺度到宏观

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Magnetic wires in highly dense arrays, possessing unique magnetic properties, are eagerly anticipated for inexpensive and scalable fabrication technologies. This study reports a facile method to fabricate arrays of magnetic wires directly assembled from well-dispersed α ″ -Fe 16 N 2 /Al 2 O 3 and Fe 3 O 4 nanoparticles with average diameters of 45 nm and 65 nm, respectively. The magnetic arrays with a height scale of the order of 10 mm were formed on substrate surfaces, which were perpendicular to an applied magnetic field of 15 T. The applied magnetic field aligned the easy axis of the magnetic nanoparticles (MNPs) and resulted in a significant enhancement of the magnetic performance. Hysteresis curves reveal that values of magnetic coercivity and remanent magnetization in the preferred magnetization direction are both higher than that of the nanoparticles, while these values in the perpendicular direction are both lower. Enhancement in the magnetic property for arrays made from spindle-shape α ″ -Fe 16 N 2 /Al 2 O 3 nanoparticles is higher than that made from cube-like α ″ -Fe 16 N 2 /Al 2 O 3 ones, owing to the shape anisotropy of MNPs. Furthermore, the assembled highly magnetic α ″ -Fe 16 N 2 /Al 2 O 3 arrays produced a detectable magnetic field with an intensity of approximately 0.2 T. Although high-intensity external field benefits for the fabrication of magnetic arrays, the newly developed technique provides an environmentally friendly and feasible approach to fabricate magnetic wires in highly dense arrays in open environment condition.
机译:对于廉价且可缩放的制造技术,热切期待具有独特磁性的高度密集阵列中的磁线。本研究报告了一种易于制造从分散的α“-Fe 16n 2 / Al 2 O 3和Fe 3 O 4纳米颗粒的磁线阵列的构造方法分别分别分别为45nm和65nm的平均直径。在基板表面上形成具有10mm的高度级的磁阵列,其垂直于15t的施加的磁场。所施加的磁场对准磁性纳米粒子(MNP)的容易轴并导致a显着提高磁性性能。滞后曲线揭示了优选的磁化方向上的磁矫顽力和再掺杂磁化的值均高于纳米颗粒的值,而垂直方向上的这些值均均更低。由主轴形α“-Fe 16n 2 / Al 2 O 3纳米颗粒制成的磁性的磁性增强高于由立方体样α”-fe 16n 2 / Al 2 O 3的α“-fe 16 n 2 / Al 2 O 3纳米颗粒。 MNP的形状各向异性。此外,组装的高磁α“-Fe 16n 2 / Al 2 O 3阵列产生了一个强度约为0.2吨的可检测的磁场。尽管用于制造磁阵列的高强度外部场效应,新开发的技术提供一种环境友好和可行的方法来制造在开放环境条件高度密集的阵列中的磁线。

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