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Preparation and characterization of Cu-Co alloy nanoparticles from double complex salts by chemical reduction

机译:化学还原法从双络合物盐制备Cu-Co合金纳米粒子及其表征

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Magnetic Cu-Co alloy nanoparticles have been prepared by a chemical reduction method of double complex salts (DCSs). In this method Cu-Co alloy nanoparticles have been prepared from [Co(NH3)(6)](2)[Cu(C2O4)(2)](3) (DCS1), [Co(NH3)(5)Cl][Cu(C2O4)(2)] (DCS2) and [Co(en)(3)](2)[Cu(C2O4)(2)](3) (DCS3) coordination complexes. Reduction of these complexes occurred in ethanolic aqueous solution by hydrazine monohydrate. In order to characterize the synthesized compounds we have used XRD, EDX, SEM and IR spectroscopy. Magnetic properties and giant magnetoimpedance are investigated in Cu-Co nanoalloys. These alloys demonstrate ferromagnetic behavior, which is due to presence of Co in the alloys. This property makes them an excellent candidate for technological applications such as magnetic devices or sensors based on a magnetoimpedance effect. The relative phase abundances of Cu and Co were carried out with the GSAS software. The results of the Rietveld refinements show a good agreement between the observed pattern and the calculated values.
机译:磁性Cu-Co合金纳米颗粒已经通过双络合物盐(DCSs)的化学还原方法制备。在此方法中,由[Co(NH3)(6)](2)[Cu(C2O4)(2)](3)(DCS1),[Co(NH3)(5)Cl]制备了Cu-Co合金纳米颗粒[Cu(C2O4)(2)](DCS2)和[Co(en)(3)](2)[Cu(C2O4)(2)](3)(DCS3)配合物。这些络合物在乙醇水溶液中通过一水合肼还原。为了表征合成的化合物,我们使用了XRD,EDX,SEM和IR光谱。在Cu-Co纳米合金中研究了磁性和巨磁阻抗。这些合金表现出铁磁行为,这是由于合金中存在Co。该特性使其成为基于磁阻效应的磁性设备或传感器等技术应用的极佳候选者。铜和钴的相对相丰度使用GSAS软件进行。 Rietveld细化的结果表明,观察到的模式与计算值之间有很好的一致性。

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