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Phase States and Magnetic Properties of Iron Nanoparticles in Carbon Nanotube Channels

机译:碳纳米管通道中铁纳米颗粒的相态和磁性

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摘要

The structure, phase composition, and magnetic properties of carbon nanotubes filled with iron nanoparticles and obtained by thermolysis of a mixture of ferrocene and C-60 fullerene or ferrocene and orthoxylene at a temperature of 800 degrees C are investigated. Electron microscopy, X-ray diffraction, and Mossbauer spectroscopy data lead to the conclusion that carbon nanotubes are multilayer systems partially filled with iron nanoparticles and/or nanorods. Metallic inclusions in nanotube channels form alpha-Fe, gamma-Fe, and Fe3C phases. The concentration of each phase in the samples is determined. It is shown that 10-20-nm iron clusters in nanotubes exhibit magnetic properties typical of bulk phases of iron. High elasticity of carbon nanotube walls facilitates stabilization of the high-temperature gamma-Fe phase; the relative concentration of this phase in a sample can be increased by lowering the concentration of ferrocene in the initial reaction mixture.
机译:研究了填充有铁纳米颗粒的碳纳米管的结构,相组成和磁性,该碳纳米管是通过在800℃的温度下将二茂铁与C-60富勒烯或二茂铁与邻二甲苯的混合物热解而获得的。电子显微镜,X射线衍射和莫斯鲍尔光谱数据得出的结论是,碳纳米管是部分填充有铁纳米颗粒和/或纳米棒的多层系统。纳米管通道中的金属夹杂物形成α-Fe,γ-Fe和Fe3C相。确定样品中各相的浓度。结果表明,纳米管中的10-20 nm铁簇具有典型的铁体相磁性。碳纳米管壁的高弹性有利于高温γ-Fe相的稳定。通过降低初始反应混合物中二茂铁的浓度,可以增加样品中该相的相对浓度。

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