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Characterization of oxidation resistant Fe@M (M=Cr, Ni) core@shell nanoparticles prepared by a modified reverse micelle reaction

机译:通过改性反转胶束反应制备的抗氧化Fe @ M(m = Cr,Ni)核心的氧化耐氧化Fe @ m(m = Cr,Ni)核心

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Iron-based nanoparticles are the forerunners in the field of nanotechnology due to their high magnetization saturation and biocompability which affords them use in a variety of applications. However, iron-based nanoparticles, due to a high surface-to-volume ratio, suffer from oxidation and limit its practicality by lowering the magnetic moment significantly. To avoid this oxidation, the surfaces of the particles have to be passivated. One such way to accomplish this passivation is to synthesize core@shell nanoparticles that have a surface treatment of chromium or nickel. These core@ shell nanoparticles have been synthesized using a reverse micelle technique. The Cr and Ni passivated iron nanoparticles were characterized by x-ray diffraction, transmission electron microscopy, vibrating sample magnetometry, and x-ray photoelectron spectroscopy to determine their phase, morphology, surface properties, and magnetization saturation. A high magnetization saturation of 160 and 165 emu/g for Cr and Ni passivated iron core@ shell nanoparticles was achieved.
机译:由于其高磁化饱和度和生物编译,铁基纳米粒子是纳米技术领域的先驱,这为它们提供了各种应用。然而,由于高表面积比,铁基纳米颗粒受到氧化并且通过显着降低磁矩来限制其实用性。为了避免这种氧化,必须钝化颗粒的表面。实现这种钝化的一种这种方法是合成具有铬或镍表面处理的核心@壳纳米粒子。使用反向胶束技术合成了这些核心壳纳米粒子。通过X射线衍射,透射电子显微镜,振动样品磁体和X射线光电子谱表征Cr和Ni钝​​化的铁纳米粒子以确定它们的相位,形态,表面性能和磁化饱和度。实现了Cr和Ni钝​​化铁核心壳纳米粒子的160和165 emu / g的高磁化饱和度。

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