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零维和一维SmCo/FeCo核壳纳米磁体中的交换耦合相互作用

Exchange-Coupling Interaction in Zero- and One-Dimensional SmCo/FeCo Core-Shell Nanomagnets.

作者信息

Lee Jimin, Kim Jiwon, Kim Danbi, Lee Gyutae, Oh Yeong-Been, Hwang Tae-Yeon, Lim Jae-Hong, Cho Hong-Baek, Kim Jongryoul, Choa Yong-Ho

机构信息

Advanced Materials & Processing Center , Institute for Advanced Engineering , 175-28, Goan-ro 51beon-gil , Baegam-myeon, Cheoin-gu, Yongin-si , Gyeonggi-do 17180 , Korea.

Department of Physics , Pukyong National University , 45 Yongsoro , Namgu, Busan 48513 , Korea.

出版信息

ACS Appl Mater Interfaces. 2019 Jul 24;11(29):26222-26227. doi: 10.1021/acsami.9b02966. Epub 2019 May 29.

Abstract

Rare-earth-based core-shell spring nanomagnets have been intensively studied in the permanent magnet industry. However, the inherent agglomeration characteristics of zero-dimensional (0-D) magnetic nanoparticles are an issue in practical fabrication of magnetic nanocomposites due to deterioration in exchange-coupling interactions, resulting in inferior magnetic performance. Here, with an aim to overcome the structural limitations, we report a new type of SmCo/FeCo core-shell nanomagnet with a well-dispersed one-dimensional (1-D) structure prepared by a combination of electrospinning and electroless plating processes. An FeCo layer with a tailored thickness on nanoscale SmCo was produced to achieve a sufficient exchange-coupling effect. The influence of electroless plating time on the microstructure of fibers was discussed, and comparisons were made as a function of the magnet shape. A 1-D SmCo/FeCo spring nanomagnet having a core diameter ranging from 150 to 200 nm and a shell thickness of 15-20 nm showed a potent exchange-coupling effect compared with its 0-D counterpart. This effectively reduced self-aggregation and further showed a remarkable enhancement in () (above 45.7%). We think that this novel structure marks a new era in the exchange-spring magnet industry and may overcome the limitations of traditional core-shell nanomagnets.

摘要

基于稀土的核壳型弹簧状纳米磁体在永磁行业中受到了广泛研究。然而,由于交换耦合相互作用的恶化,零维(0-D)磁性纳米颗粒固有的团聚特性在磁性纳米复合材料的实际制备中是一个问题,导致磁性能较差。在此,为了克服结构限制,我们报道了一种新型的SmCo/FeCo核壳纳米磁体,它具有通过静电纺丝和化学镀工艺相结合制备的分散良好的一维(1-D)结构。在纳米级SmCo上制备了具有定制厚度的FeCo层,以实现足够的交换耦合效应。讨论了化学镀时间对纤维微观结构的影响,并根据磁体形状进行了比较。与零维对应物相比,一种核直径在150至200nm范围内且壳厚度为15 - 20nm的一维SmCo/FeCo弹簧状纳米磁体显示出强大的交换耦合效应。这有效地减少了自聚集,并进一步显示出()的显著增强(超过45.7%)。我们认为这种新型结构标志着交换弹簧磁体行业的一个新时代,并且可能克服传统核壳纳米磁体的局限性。

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