Impact of V substitution on the physical properties of Ni-Zn-Co ferrites: structural, magnetic, dielectric and electrical properties
M. D. Hossain, A. T. M. K. Jamil, M. R. Hasan, M. A. Ali, I. N. Esha,, M. A. Hakim, M. N. I. Khan

TL;DR
This study explores how substituting Vanadium into Ni-Zn-Co ferrites affects their structural, magnetic, dielectric, and electrical properties, highlighting potential applications in microwave devices.
Contribution
It provides a comprehensive analysis of V substitution effects on ferrites' properties using various characterization techniques, which is novel in this material system.
Findings
V substitution maintains single-phase cubic spinel structure.
Electrical resistivity and dielectric constant vary inversely with composition.
Ferrites show promising properties for microwave device applications.
Abstract
We have investigated the Vanadium- (V) substituted Ni-Zn-Co ferrites where the samples were prepared using solid-state reaction technique. The impact of V5+ substitution on the structural, magnetic, dielectric and electrical properties of Ni-Zn-Co ferrites has been studied. XRD analysis confirmed the formation of a single-phase cubic spinel structure. The lattice constants have been calculated both theoretically and experimentally along with other structural parameters such as bulk density, X-ray density and porosity. The FESEM images are taken to study the surface morphology. FTIR measurement is also performed which confirms spinel structure formation. The saturation magnetization (Ms), coercive field (Hc) and Bohr magneton (B) were calculated from the obtained M-H loops. The temperature dependent permeability is studied to obtain the Curie temperature. Frequency and composition…
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Taxonomy
TopicsMagnetic Properties and Synthesis of Ferrites · Magneto-Optical Properties and Applications · Electromagnetic wave absorption materials
