| dc.description.abstract |
Cr3+ substituted Ni-Mn-Zn, a chemical composition of ferrites that includes
Ni0.6Mn0.2Zn0.2CrxFe2-xO4 ferrites (where x = 0.00, 0.05, 0.10, 0.15, 0.20), were synthesized via the
solid-state reaction method. Inside a muffle furnace, these samples are heated to 1100°C for four
hours and then left to cool down naturally. The ferrites were then further studied using X-ray
diffraction (XRD), Scanning Electron Microscope (SEM), Impedance analyzer, and Vibrating
Sample Magnetometer (VSM). The XRD data confirmed the formation of a cubic spinel
structure without secondary phases. A reduction of the lattice constant due to Cr3+ presence is
observed because of having smaller Cr ions (0.62Å) than Fe ions (0.645Å). The SEM images
confirmed the homogenous distribution of grains, where the grain sizes of the Cr3+-substituted
composition are found to be less than that of the Ni-Mn-Zn basic composition, except for x=0.10.
The Cr3+-substituted compositions exhibit a larger dielectric constant than the x=0.0
composition. The AC resistivity value is also less for the Cr3+-substituted compositions. The
VSM was utilized to investigate the magnetic properties. The saturation magnetization,
remanent magnetization, and coercive field were significantly influenced by the Cr3+
substitution because Cr3+ has a lower magnetic moment than Fe3+.. A decrease in magnetic
permeability has also been observed owing to the Cr3+ substitution. |
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