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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Physical-chemical properties of M@Fe3O4 core@shell nanowires (M = Cu, Co, CoO)
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Physical-chemical properties of M@Fe3O4 core@shell nanowires (M = Cu, Co, CoO)

机译:M @ Fe3O4核心@壳纳米线的物理化学性质(M = Cu,Co,CoO)

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摘要

Interest in low dimensional magnetic systems has been growing due to the novel and dramatically differentiated effects of their physical properties, which give them special behaviors and uses in biomedical, environmental and technological fields. In this study we report extensive first-principles calculations on the geometric optimization as well as electronic, magnetic, mechanical and thermal properties of several quasi one-dimensional core/shell nanowires: Cu/Fe3O4, Co/Fe3O4, and CoO/Fe3O4. The main focus lies on the quantum confinement effects as well as on the effect of the interaction between the ferrimagnetic semiconductor shell material (magnetite nanotube) and core compounds with differentiated magnetic behavior such as (i) a ferromagnetic material (Co), (ii) an antiferromagnetic transition metal oxide (CoO) and (iii) a non-magnetic simple metal (Cu). The mechanical properties of the related nanosystems are studied through the effects of axial deformations, and their thermal behavior is evaluated by considering the electronic contribution of each sample to the heat capacity, and some potential technological applications are suggested.
机译:由于新颖的新颖,对低维磁性系统的兴趣越来越大,其物理性质的效果显着差异,这为他们提供了生物医学,环境和技术领域的特殊行为和用途。在这项研究中,我们报告了几何优化的广泛的第一原理计算,以及几种准一体芯/壳纳米线的电子,磁,机械和热性能:Cu / Fe3O4,Co / Fe3O4和CoO / Fe3O4。主要焦点位于量子限制效应以及亚铁磁性半导体壳材料(磁铁矿纳米管)和核心化合物之间的相互作用的影响,诸如(i)铁磁材料(CO),(II)反铁磁过渡金属氧化物(COO)和(III)非磁性简单金属(Cu)。通过轴向变形的影响研究了相关纳米系统的机械性能,通过将每个样品的电子贡献考虑到热量的电子贡献,并提出了一些潜在的技术应用来评估它们的热行为。

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  • 作者单位

    Pontificia Univ Catolica Chile Fac Fis Ctr Invest Nanotecnol &

    Mat Avanzados CIEN UC CEDENNA Santiago Chile;

    Pontificia Univ Catolica Chile Fac Fis Ctr Invest Nanotecnol &

    Mat Avanzados CIEN UC CEDENNA Santiago Chile;

    Univ Antioquia Grp Estado Solido Grp Instrumentac Cient &

    Microelect IF FCEN Calle 70 52-21 Medellin 1226 Colombia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理学;化学;
  • 关键词

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