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Influence of Structural Features and Physico-chemical Properties of Metal-carbon Nanocomposites with Ferromagnetic Metal Inclusions on Microwave Radiation

机译:具有铁磁性金属夹杂物的金属碳纳米复合材料的结构特征和理化性质对微波辐射的影响

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摘要

Metal-carbon nanocomposites on the basis of polyacrylonitrile and compounds of metals (Fe, Ni, Co) udsynthesized at IR-heating and studied by SEM, X-ray phase analysis, Raman scattering, IR Fourier spec-troscopy are characterized by the carbon nanostructured amorphous graphite matrix with uniformly dis-tributed nanoparticles of metals (10-30 nm), their oxides and compounds – FeNi3 and FeCo, multilayered udcarbon nanotubes (~ 7-22 nm), and in the composition of Fe-Co / C fullerene-like formations – C60. All udnanocomposites feature high absorption of electromagnetic waves in the frequency range 20-40 GHz. Two udabsorption mechanisms are proposed: dielectric loss in the amorphous carbon matrix and scattering of udelectric and magnetic components by ferromagnetic inclusions. Absorption was – 8.68 dB for Fe-Ni / C, ud– 12.93 dB for Fe / C, and – 7.07 dB for Ni / C and for Fe-Co / C was found to be maximum in the whole udrange studied (more than – 40 dB) with a peak of – 52.83 dB at 24.27 GHz, which is explained probably by udboth high nanocomposite electric conductivity 2 S / m and high specific magnetization of phase FeCo.When you are citing the document, use the following link http://essuir.sumdu.edu.ua/handle/123456789/36259
机译:在红外加热下合成并通过SEM,X射线相分析,拉曼散射,红外傅里叶光谱学研究的,以聚丙烯腈和金属化合物(Fe,Ni,Co)为基础的金属-碳纳米复合材料的特征在于碳纳米结构的无定形石墨基体,具有金属(10-30 nm),其氧化物和化合物(FeNi3和FeCo),多层 ud碳纳米管(〜7-22 nm)和Fe-Co / C组成的纳米颗粒富勒烯样结构– C60。所有 udnano复合材料均具有20-40 GHz频率范围内电磁波的高吸收率。提出了两种吸收机理:非晶碳基质中的介电损耗和铁磁夹杂物对电子和磁性成分的散射。在整个研究范围内,Fe-Ni / C的吸收为– 8.68 dB,Fe / C的吸收为 ud – 12.93 dB,Ni / C和Fe-Co / C的吸收值为– 7.07 dB最大(更多)大于– 40 dB),在24.27 GHz时具有– 52.83 dB的峰值,这可能是由于 n纳米复合材料的高电导率2 S / m和相FeCo的比磁化强度高而引起的。当您引用本文时,请使用以下链接http://essuir.sumdu.edu.ua/handle/123456789/36259

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