Investigation on various properties of hexaferrites and composites to find potential applications
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Abstract
newlineA series of Erbium substituted X-type Ba2Co2ErxFe28-xO46 (x = 0.00, 0.04,
newline0.08, 0.12, 0.16, and 0.20) hexaferrites were prepared by the method of heat
newlinetreatment. The obtained precursors were heated at 1350 °C for 6 h. XRD
newlineinvestigation reveals that x = 0.0 sample possesses X, W-type, and and#945;-Fe2O3
newlinephases, while Er- substituted samples show presence of X and W phases.
newlineThe room temperature Mössabuer spectra have been fitted with five sextets.
newlineA variation in saturation magnetization (MS) is explained and supported by
newlinethe Mössbauer spectroscopy. The maximum values of MS (52.29 Am2/kg)
newlineand anisotropy field- Ha (1370 kA/m) are found for x = 0.12 composition.
newlineSimilarly, the maximum relative area (and#8764; 69%) for spin up sites (k+a+b) is
newlinealso found for x =0.12 composition. Low frequency (20 Hz 2 MHz) dielectric
newlineresponse of all samples show normal behavior of ferromagnetic materials.
newlineThe dielectric measurements reveal that the conduction in low frequency is
newlinedue to grain boundary contributions and at the higher frequency it is due to
newlinegrain contributions. AC conductivity is found to increase with frequency in
newlineall prepared hexaferrites. The substituted compositions can have potential
newlineapplications in filter application due to soft ferrite behavior and low dielectric
newlineloss tangent.
newlineSrFe12O19 (M-type hexaferrite) and NiFe2O4 (spinel) nano ferrite powders
newlinewere synthesized in the presence of Calotropis gigantea (crown) flowers
newlineextract separately. SrFe12O19/NiFe2O4 nanocomposites were prepared in the
newlinepresence of crown flowers extract and the effect of different weight ratios
newline(M:S 9:1, 8:2, 7:3, 6:4, 5:5) on structural, microstructural, magnetic, electrixi
newlinexii
newlinecal transport, and dielectric properties were studied. The average crystallite
newlinesize of nanocomposites was found from 25 nm to 44 nm. In addition, it was
newlineobserved that the crystallite size of the M-phase decreased when the spinel
newlinephase increased. XRD analysis depicts the presence of both M and S phases
newlinein composites. The M-H loops analysis of SrFe12O19/NiFe2O4 composi