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Synthesis and Characterization of Structural, and Electrical Properties of Mg(0.25x)Cu(0.25x)Zn(1−0.5x)Fe2o4 Ferrites by Sol-Gel Method

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dc.contributor.author Talukder, S.
dc.contributor.author Hossain, M.
dc.contributor.author Begum, M.
dc.contributor.author Warnock, R. L.
dc.contributor.author Haque, M.
dc.contributor.author Ahmed, N.
dc.date.accessioned 2021-12-30T04:00:51Z
dc.date.available 2021-12-30T04:00:51Z
dc.date.issued 2019
dc.identifier.uri http://dspace.daffodilvarsity.edu.bd:8080/handle/123456789/6594
dc.description.abstract The effects of magnesium, copper, and zinc substitutions on spinel ferrites have been investigated by the sol-gel technique. Ferrite compositions of Mg0.25𝑥Cu0.25𝑥Zn(1−0.5𝑥)Fe2O4 (where 𝑥 = 0.6, 0.7, 0.8 & 0.9) were prepared at a sintering temperature of 1100 ∘C with a presintering at 500 ∘C. X-ray diffraction (XRD), scanning electron microscopy (SEM), and high-precision impedance analysis are used to characterize structural and dielectric properties, as well as the surface topography and morphology of the samples. A single phase, cubic spinel structure, with decreased lattice constant was observed. SEM micrographs revealed a homogeneous microstructure with uniform size distributions. Both the dielectric constant and dielectric loss tangent decrease, as the incident frequency increases up to a certain saturation point. The direct current (𝑑𝑐) resistivity profile shows that the resistivity increases with the temperature up to the Curie point, then it goes to a constant value. The quality factor (𝑄-factor) increases with the incident frequency. Hence, the high 𝑄-factor will make ferrites highly useful in applications, especially in multilayer chip inductors. en_US
dc.language.iso en_US en_US
dc.publisher Ukrainian Journal of Physics en_US
dc.subject Electric properties en_US
dc.subject Electrical en_US
dc.title Synthesis and Characterization of Structural, and Electrical Properties of Mg(0.25x)Cu(0.25x)Zn(1−0.5x)Fe2o4 Ferrites by Sol-Gel Method en_US
dc.type Article en_US


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