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探索创新核/壳/壳结构中交换偏置的增强:钴氧化物/钴和钴氧化物/钴/钴氧化物倒置纳米结构的合成与磁性

Exploring the Enhancement of Exchange Bias in Innovative Core/Shell/Shell Structures: Synthesis and Magnetic Properties of Co-Oxide/Co and Co-Oxide/Co/Co-Oxide Inverted Nanostructures.

作者信息

Ghoshani Maral, Mozaffari Morteza, Acet Mehmet, Hosseini Mahshid, Vashaee Daryoosh

机构信息

Department of Physics, Faculty of Physics, University of Isfahan, Isfahan 81746-73441, Iran.

Instituto Regional de Investigación Científica Aplicada (IRICA) and Departamento de Física Aplicada, Universidad de Castilla-La Mancha, 13071 Ciudad Real, Spain.

出版信息

Nanomaterials (Basel). 2023 Feb 26;13(5):880. doi: 10.3390/nano13050880.

Abstract

In this study, we investigate the enhancement of exchange bias in core/shell/shell structures by synthesizing single inverted core/shell (Co-oxide/Co) and core/shell/shell (Co-oxide/Co/Co-oxide) nanostructures through a two-step reduction and oxidation method. We evaluate the magnetic properties of the structures and study the effect of shell thickness on the exchange bias by synthesizing various shell thicknesses of Co-oxide/Co/Co-oxide nanostructures. The extra exchange coupling formed at the shell-shell interface in the core/shell/shell structure leads to a remarkable increase in the coercivity and the strength of the exchange bias by three and four orders, respectively. The strongest exchange bias is achieved for the sample comprising the thinnest outer Co-oxide shell. Despite the general declining trend of the exchange bias with Co-oxide shell thickness, we also observe a nonmonotonic behavior in which the exchange bias oscillates slightly as the shell thickness increases. This phenomenon is ascribed to the dependence of the antiferromagnetic outer shell thickness variation at the expense of the simultaneous opposite variation in the ferromagnetic inner shell.

摘要

在本研究中,我们通过两步还原和氧化法合成单倒核/壳(钴氧化物/钴)和核/壳/壳(钴氧化物/钴/钴氧化物)纳米结构,研究核/壳/壳结构中交换偏置的增强情况。我们评估了这些结构的磁性能,并通过合成不同壳厚度的钴氧化物/钴/钴氧化物纳米结构,研究壳厚度对交换偏置的影响。核/壳/壳结构中壳-壳界面处形成的额外交换耦合分别导致矫顽力显著增加以及交换偏置强度增加三个和四个数量级。对于包含最薄外部钴氧化物壳的样品,实现了最强的交换偏置。尽管交换偏置随钴氧化物壳厚度总体呈下降趋势,但我们也观察到一种非单调行为,即随着壳厚度增加,交换偏置会略有振荡。这种现象归因于反铁磁外壳厚度变化依赖于铁磁内壳同时发生相反变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fff4/10005359/f261d89838fc/nanomaterials-13-00880-g001.jpg

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