铁填充碳纳米管的磁阻

I. Ovsiienko, T. L. Tsaregradskaya, D. Shpylka, L. Matzui, G. V. Saenko, U. Ritter, T. Len, Y. Prylutskyy
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引用次数: 2

摘要

本文介绍了铁填充多壁碳纳米管的磁阻实验研究结果。以二茂铁为铁源,在管状石英炉中以苯为原料,在950 ^{\circ}\text{C}$的温度下热解制备了多壁碳纳米管。该方法制备的碳纳米管内腔中含有不同浓度的铁、碳化铁和氧化铁等磁性相颗粒。在4.2 K ~ 293 K的温度范围和2 t的磁场范围内对改性碳纳米管的体样电阻进行了测试。结果表明,改性碳纳米管的磁电阻是由巨磁电阻效应和各向异性磁电阻效应两种效应共同决定的,并且每种效应的相对贡献取决于磁相的浓度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Magnetoresistance of Carbon Nanotubes Filled by Iron
Paper presents the results of experimental investigations of magnetoresistance of filled with iron multi-walled carbon nanotubes. Multi-walled carbon nanotubes have been prepared by pyrolysis of benzene in a tubular quartz furnace at a temperature of $950 ^{\circ}\text{C}$ with use ferrocene as a source of iron. The obtained by this method carbon nanotubes contain in the inner cavity the particles of the magnetic phase, namely iron, iron carbide and iron oxides in various concentrations. The electrical resistance of bulk specimens of modified carbon nanotubes have been carried out in the temperature interval from 4.2 K to 293 K and in magnetic field up to 2 T. It is shown that magnetoresistance of modified carbon nanotubes is determined by a combination of two effects: the giant magnetoresistance effect and anisotropic magnetoresistance effect, moreover, the relative contribution of each effect depends on the concentration of the magnetic phase.
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