4.7 Article

Structural phase transformations of as-synthesized Cu-nanoferrites by annealing process

期刊

JOURNAL OF ALLOYS AND COMPOUNDS
卷 649, 期 -, 页码 712-720

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ELSEVIER SCIENCE SA
DOI: 10.1016/j.jallcom.2015.07.157

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Annealed Cu-nanoferrites; Phase transformations; Structural parameters; Magnetic properties; IR spectra

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Samples of the as-synthesized CuFe2O4 nanoferrites by co-precipitation route were annealed at different temperatures T. X-ray diffraction, infrared and Mossbauer spectroscopy and vibrating sample magnetometry were used for characterizing the samples. The sample structure phase was transformed from cubic-to-tetragonal-to-cubic as T increases. This transformation was attributed to the tetragonal distortion of Jahn-Teller effect of Cu2+ ions (d(9)). The crystallite size R, lattice parameters, density, porosity P, strain and stiffness constant showed dependence on annealing temperature T. Seven absorption bands were observed in the IR spectra. The two characteristic bands of spinel ferrites, v(1) and v(2), force constants and Debye temperature showed a decrease against T. The absorption bands v(1) and v(2) proved dependence on bond length; d(AO) and d(BO), and saturation magnetization Ms, respectively. Hyperfine magnetic fields, line widths, area ratio of B- to A-sites, isomer shifts and quadrupole shifts (splitting) were deduced and discussed as functions of T, where the cation distribution were estimated. XRD patterns, Infrared spectra and RT temperature hysteresis loops proved the transformation process. Saturation magnetization showed dependence on T, P and R. (C) 2015 Elsevier B.V. All rights reserved.

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