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Size dependence of the magnetic properties of cobalt oxide nanoparticles mineralized in protein cages.

机译:蛋白质笼中矿化的氧化钴纳米颗粒的磁性的尺寸依赖性。

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摘要

A major question in the physics of magnetic nanoparticles is how the size affects the magnetic properties in magnetic nanoparticle systems. In particular, the magnetic properties can be affected by finite-size effects or surface effects. It is this author's belief that surface effects and not finite-size effects play the dominate role. This study is a specific example of how to try to answer this question by looking at different sizes of Co 3O4 nanoparticles.; In order to answer this question as well as better understand this system, different antiferromagnetic Co3O4 nanoparticles of 4.35 nm and 6.3 nm in diameter were synthesized. These particles were determined to be relatively uniform and monodispersed. In this study, Transmission Electron Microscopy (TEM), electron diffraction (ED) and X-ray Absorption Spectroscopy (XAS) were used to study the physical and electronic structure of the nanoparticles.; Alternating Current Magnetic Susceptibility (ACMS) was used to measure the magnetic anisotropy energy density of the different size nanoparticles. It was found that the anisotropy energy density increases with decreasing size, from 1.09 x 104 J/m3 for the 6.3 nm particles to 7.53 x 104 J/m3 for the 4.35 nm particles, consistent with the importance of surface anisotropy with decreasing particle size. Vibrating Sample Magnetometry (VSM) was used to measure the Neel temperature and coercive field of the different particles. It was found that the Neel temperature decreases with decreasing size, from 40 K to 15 K, consistent with a simple surface approximation of the finite-size scaling theory, while the coercive field increased with decreasing particle size consistent with a surface model.; The main conclusion of this work is that surface effects and not finite-size effects play a major role in the change of the magnetic properties with size in Co3O4 nanoparticles. The evidence also suggests that the increase in the anisotropy energy density is due to the creation of a surface anisotropy component normal to the surface of the particles.
机译:磁性纳米粒子物理学中的一个主要问题是尺寸如何影响磁性纳米粒子系统中的磁性。特别地,磁性能会受到有限尺寸效应或表面效应的影响。作者相信表面作用而不是有限尺寸作用起主要作用。这项研究是一个具体的例子,说明了如何通过观察不同大小的Co 3O4纳米颗粒来回答这个问题。为了回答这个问题并更好地理解该系统,合成了直径为4.35 nm和6.3 nm的不同反铁磁性Co3O4纳米粒子。确定这些颗粒相对均匀并且是单分散的。在这项研究中,使用透射电子显微镜(TEM),电子衍射(ED)和X射线吸收光谱(XAS)来研究纳米粒子的物理和电子结构。交流磁化率(ACMS)用于测量不同尺寸纳米粒子的磁各向异性能密度。发现各向异性能量密度随尺寸减小而增加,从6.3 nm颗粒的1.09 x 104 J / m3到4.35 nm颗粒的7.53 x 104 J / m3,这与表面各向异性随颗粒尺寸减小的重要性一致。振动样品磁力测定法(VSM)用于测量不同颗粒的Neel温度和矫顽场。研究发现,Neel温度随着尺寸的减小而减小,从40 K减小到15 K,这与有限尺寸缩放理论的简单表面近似相符,而矫顽场则随着与表面模型相符的减小的尺寸而增大。这项工作的主要结论是,表面效应而非有限尺寸效应在Co3O4纳米粒子的磁性随尺寸的变化中起着主要作用。证据还表明,各向异性能密度的增加是由于产生了垂直于颗粒表面的表面各向异性成分。

著录项

  • 作者

    Resnick, Damon Aaron.;

  • 作者单位

    Montana State University.;

  • 授予单位 Montana State University.;
  • 学科 Physics Condensed Matter.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 147 p.
  • 总页数 147
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 O49;
  • 关键词

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