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Effect of Zn-doping on Structural and Magnetic Properties of Copper Ferrite Nanoparticles

机译:Zn掺杂对铁氧体纳米粒子结构和磁性的影响

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The nanoparticles of CuFe_2O_4 (CF) and Cu_(0.8)Zn_(0.2)Fe_2O_4 (CZF) were synthesized using co-precipitation method to study the effect of Zn doping in Cu-ferrite. The X-ray diffraction (XRD) patterns were well fitted with two-phase structure using Rietveld analysis as Fd-3 m space group (spinel system) and C12/c1 space group (monoclinic system CuO-phase). The average crystallite size of the CF and CZF nanoparticles for spinel structure are 6 and 7 nm respectively. The spinel phase fraction is increased from 56% to 71% with Zn-doping of 20% in CF. The transmission electron micrograph analysis showed the narrow size distribution for CZF nanoparticles. The magnetization plots as a function of magnetic field (M (H)) of CF and CZF nanoparticles indicate superparamagnetic behavior. The magnetization is increased with Zn-doping in CF. The stable spinel Cu-ferrite can be obtained with Zn-doping in CF.
机译:使用共沉淀法合成CuFe_2O_4(CF)和Cu_(0.8)Zn_(0.2)Fe_2O_4(CZF)的纳米颗粒研究Zn掺杂在Cu-铁素体中的作用。 X射线衍射(XRD)图案良好地配有双相结构,使用RIETVELD分析作为FD-3M空间组(尖晶石系统)和C12 / C1空间组(单斜晶体系CuO相)。用于尖晶石结构的CF和CZF纳米粒子的平均微晶尺寸分别为6和7nm。尖晶石相级分从56%增加到71%​​,Zn掺杂为20%。透射电子显微照片分析显示CZF纳米粒子的窄尺寸分布。作为CF和CZF纳米粒子的磁场(M(H))的函数的磁化曲线表明了超顺磁性行为。在CF中,磁化增加了Zn掺杂。稳定的尖晶石Cu-铁素体可以在CF中以Zn掺杂获得。

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