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Magnetic Properties of Electrospun Magnetic Nanofiber Mats after Stabilization and Carbonization

机译:稳定化和碳化后电纺磁纳米纤维垫的磁性

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摘要

Magnetic nanofibers are of great interest in basic research, as well as for possible applications in spintronics and neuromorphic computing. Here we report on the preparation of magnetic nanofiber mats by electrospinning polyacrylonitrile (PAN)/nanoparticle solutions, creating a network of arbitrarily oriented nanofibers with a high aspect ratio. Since PAN is a typical precursor for carbon, the magnetic nanofiber mats were stabilized and carbonized after electrospinning. The magnetic properties of nanofiber mats containing magnetite or nickel ferrite nanoparticles were found to depend on the nanoparticle diameters and the potential after-treatment, as compared with raw nanofiber mats. Micromagnetic simulations underlined the different properties of both magnetic materials. Atomic force microscopy and scanning electron microscopy images revealed nearly unchanged morphologies after stabilization without mechanical fixation, which is in strong contrast to pure PAN nanofiber mats. While carbonization at 500 °C left the morphology unaltered, as compared with the stabilized samples, stronger connections between adjacent fibers were formed during carbonization at 800 °C, which may be supportive of magnetic data transmission.
机译:磁性纳米纤维对基础研究具有很大的兴趣,以及在闪蒸和神经形态计算中的可能应用。在这里,我们通过静态纺丝蛋白/纳米颗粒溶液来报告磁性纳米纤维垫的制备,采用具有高纵横比的任意取向纳米纤维的网络。由于锅是碳的典型前体,但静电型磁性纳米纤维垫稳定并碳化。发现含有磁铁矿或镍铁氧体纳米颗粒的纳米纤维垫的磁性依赖于纳米颗粒直径和潜在的后处理,与原料纳米纤维垫相比。微磁性模拟强调了两种磁性材料的不同性质。原子力显微镜和扫描电子显微镜图像显示稳定后的几乎不变的形态,没有机械固定,与纯PAN纳米纤维垫具有强烈的对比。虽然500℃的碳化留下的形态,但与稳定的样品相比,在800℃的碳化期间形成相邻纤维之间的更强的连接,这可以是磁数据传输的支持。

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