Synthesis, Characterization, Optical Properties, and Electron Paramagnetic Resonance for Nano Zn0 . 5Co0 . 5Fe2 − xPrx O4
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Springer New York LLC
Abstract
Nano ferrite samples of type Zn0.5Co0.5Fe2−x PrxO4, 0 ≤ x ≤ 0.2, were prepared by co-precipitation method for different concentration of Pr ions at a calcination temperature of 823 K. The samples were characterized using x-ray diffraction and transmission electron microscope (TEM), UV spectroscopy, FTIR, and electron paramagnetic resonance (EPR). The increase in concentration of Pr ions shows a significant change in the formed nano ferrite particles size, degree of aggregation, energy band gap, and lattice parameters. X-band (9.24 GHz) EPR spectra at room temperature showed a decrease in the g factor as the Pr content was increased. Furthermore, the variation of the Pr3+ concentration in the samples led to different aggregation states, ranging from isolated nanoparticles with average crystal size of 28.5 to about 15 nm, as confirmed by x-ray diffraction and high-resolution transmission electron microscopy. © 2016, Springer Science+Business Media New York.
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Co0.5zn0.5fe2−xprxo4, Coznfe2o4, Epr, Nanoferrite, Tem, Xrd, Agglomeration, Electron resonance, Electron spin resonance spectroscopy, Electrons, Energy gap, Ferrite, Fourier transform infrared spectroscopy, Magnetic resonance, Optical properties, Paramagnetic resonance, Paramagnetism, Precipitation (chemical), Transmission electron microscopy, Ultraviolet spectroscopy, X ray diffraction, Zinc, Aggregation state, Calcination temperature, Coprecipitation method, Crystal size, Degree of aggregation, Electron paramagnetic resonances (epr), Nanoferrites, High resolution transmission electron microscopy