Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5448520 | Materials Chemistry and Physics | 2017 | 8 Pages |
Abstract
Nanocrystalline particles of compositions (CoZn)xMn1âxFe2O4 were prepared by the coprecipitation method from stoichiometric aqueous solutions, where x varies from 0 to 0.3 in steps of 0.05. The synthesized powders were characterized by X-ray diffraction (XRD), transmission electron microscope (TEM) and Fourier transform infrared spectroscopy (FT-IR). A vibrating sample magnetometer (VSM) was used to measure the hysteresis parameters at 300 and 6Â K. Zero field cooling (ZFC) and field cooling (FC) curves were obtained at the temperature range 6-400Â K and the blocking temperature values were determined. XRD analysis confirmed the formation of the obtained powder in a single cubic spinel phase and it showed also that the lattice parameter is decreasing with the increase of (Co-Zn) content. FT-IR measurements between 160 and 650Â cmâ1 also confirmed the intrinsic cation vibrations of the spinel structure. The magnetic measurements showed that the saturation magnetization, coercivity and the values of blocking temperatures were increased with the (Co-Zn) content. TEM micrographs declared the improvement of particle size homogeneity with the increase of (Co-Zn) content without remarkable change in the average particle size. The obtained results were discussed in view of A-B sublattices interaction and superparamagnetic phenomenon.
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Authors
M.M. Eltabey, A.M. Massoud, Cosmin Radu,