Pt‐Fe loaded nanostructured silicon and improvement of the magnetic performance

Nano Select Pub Date : 2024-03-15 DOI:10.1002/nano.202300166
P. Granitzer, K. Rumpf, R. Gonzalez-Rodriguez, J. Coffer
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Abstract

This work reports the pore‐filling of porous silicon (PSi) and the loading of silicon nanotubes (SiNTs) with Pt‐Fe nanoparticles (NPs) and the corresponding different magnetic behavior of the two composite systems. The fabrication of magnetic hard/soft nanostructures is in demand for the purpose of achieving both a high energy product as well as the replacement of rare earth permanent magnets. Pt‐Fe templated by PSi shows a higher coercivity and remanence than SiNTs/Pt‐Fe and thus a higher hard magnetic performance, the difference between coercivities being about 57%. Considering that the Pt‐Fe deposits employ different molar ratios of Pt to Fe the coercivities vary in a range of 5% in the case of both template types. Comparing Pt‐Fe loaded samples with Co‐loaded samples in all cases, an increase of the coercivity and the remanence is observed for Pt‐Fe, whereas in the case of PSi as template material the increase is significantly stronger (about twice as much) than in the case of SiNTs samples. Furthermore, the samples are investigated at high temperatures up to 950 K to determine the Curie temperature of the systems.
负载铂-铁的纳米结构硅及其磁性能的改善
这项研究报告了多孔硅(PSi)的孔隙填充和硅纳米管(SiNTs)与铂-铁纳米粒子(NPs)的负载,以及这两种复合体系相应的不同磁性行为。为了获得高能量产品以及替代稀土永磁体,磁性硬/软纳米结构的制造需求旺盛。与 SiNTs/Pt-Fe 相比,以 PSi 为模板的 Pt-Fe 显示出更高的矫顽力和剩磁,因此具有更高的硬磁性能,两者的矫顽力相差约 57%。考虑到铂-铁沉积物采用不同的铂-铁摩尔比,两种模板类型的矫顽力相差 5%。将所有情况下的铂-铁负载样品与共负载样品进行比较,可以观察到铂-铁的矫顽力和剩磁都有所增加,而在以 PSi 为模板材料的情况下,矫顽力和剩磁的增加要明显强于氮化硅样品(约为其两倍)。此外,还在高达 950 K 的高温下对样品进行了研究,以确定系统的居里温度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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