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Effect of magnetic field strength on the alignment of alpha ''-Fe16N2 nanoparticle films

机译:在对齐磁场强度的影响α”-Fe16N2纳米颗粒薄膜

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摘要

Aligning the magnetic orientation is one strategy to improve the magnetic performance of magnetic materials. In this study, well-dispersed single-domain core-shell alpha ''-Fe16N2/Al2O3 nanoparticles (NPs) were aligned by vertically applying magnetic fields with various strengths to a Si wafer substrate followed by fixation with resin. X-ray diffraction indicated that the alignment of the easy c-axis of the alpha ''-Fe16N2 crystal and the magnetic orientation of the NPs depended upon the applied magnetic field. Magnetic analysis demonstrated that increasing the magnetic field strength resulted in hysteresis loops approaching a rectangular form, implying a higher magnetic coercivity, remanence, and maximum energy product. The same tendency was also observed when a horizontal magnetic field was applied. The fixation of the easy c-axis alignment of each nanoparticle caused by Brownian rotation under the magnetic field, instead of Neel rotation, was the reason for the enhancement in the magnetic performance. These results on the alignment of the magnetic orientation of alpha ''-Fe16N2 NPs suggest the practical application of high-performance permanent bulk magnets from well-dispersed single-domain alpha ''-Fe16N2/Al2O3 NPs.
机译:调整磁取向是一个策略提高磁磁的性能材料。单极核壳阿尔法”-Fe16N2 /氧化铝纳米颗粒(NPs)被垂直对齐应用磁场与各种优势硅晶片衬底上紧随其后的是固定树脂。对齐的简单c-axisα“-Fe16N2水晶的磁场方向NPs取决于应用磁场。磁分析表明,增加磁场强度导致滞回线接近一个矩形形式,意味着更高的磁矫顽力、剩磁和最大的能源产品。也观察到当一个横向磁场是应用。每个纳米颗粒由于布朗的对齐旋转磁场下,而不是奈尔旋转,是增强的原因在磁性性能。阿尔法磁取向的一致性“-Fe16N2 NPs建议实际应用高性能永久散装磁铁的说法单极α“-Fe16N2 / Al2O3 NPs .

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