Synthesis, magnetic and optical properties of core/shell Co 1-xZn xFe 2O 4/SiO 2 nanoparticles

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Abstract

The optical properties of multi-functionalized cobalt ferrite (CoFe 2O 4), cobalt zinc ferrite (Co 0.5Zn 0.5Fe 2O 4), and zinc ferrite (ZnFe 2O 4) nanoparticles have been enhanced by coating them with silica shell using a modified Stöber method. The ferrites nanoparticles were prepared by a modified citrate gel technique. These core/shell ferrites nanoparticles have been fired at temperatures: 400°C, 600°C and 800°C, respectively, for 2 h. The composition, phase, and morphology of the prepared core/shell ferrites nanoparticles were determined by X-ray diffraction and transmission electron microscopy, respectively. The diffuse reflectance and magnetic properties of the core/shell ferrites nanoparticles at room temperature were investigated using UV/VIS double-beam spectrophotometer and vibrating sample magnetometer, respectively. It was found that, by increasing the firing temperature from 400°C to 800°C, the average crystallite size of the core/shell ferrites nanoparticles increases. The cobalt ferrite nanoparticles fired at temperature 800°C; show the highest saturation magnetization while the zinc ferrite nanoparticles coated with silica shell shows the highest diffuse reflectance. On the other hand, core/shell zinc ferrite/silica nanoparticles fired at 400°C show a ferromagnetic behavior and high diffuse reflectance when compared with all the uncoated or coated ferrites nanoparticles. These characteristics of core/shell zinc ferrite/silica nanostructures make them promising candidates for magneto-optical nanodevice applications. © 2011 Girgis et al.

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Girgis, E., Wahsh, M. M. S., Othman, A. G. M., Bandhu, L., & Rao, K. V. (2011). Synthesis, magnetic and optical properties of core/shell Co 1-xZn xFe 2O 4/SiO 2 nanoparticles. Nanoscale Research Letters, 6, 1–8. https://doi.org/10.1186/1556-276X-6-460

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