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Comparative Dielectric Analysis of Co-Zr Doped M-Type Barium Hexaferrites BaCo<sub>x</sub>Zr<sub>x</sub>Fe<sub>(12-2x)</sub>O<sub>19</sub>Prepared by Different Wet Chemical Routes
50
Citations
28
References
2015
Year
Materials ScienceSol GelMagnetic PropertiesEngineeringEnergy CeramicApplied PhysicsSuperconductivityCondensed Matter PhysicsBarium HexaferritesMetallic Functional MaterialComparative Dielectric AnalysisSolid-state ChemistryMicrowave CeramicChemistryElectrical PropertyFunctional MaterialsLow Conductivity
Samples of barium hexaferrites (BaCoxZrxFe(12-2x)O19) with varying molar concentration of Cobalt and Zirconium were synthesized successfully by three different wet chemical routes: Sol gel, Citrate and self-combustion. Dielectric constant, dielectric loss tangent and AC Conductivity measurements were carried out in the frequency range 20Hz–1MHz over Impedance analyzer. Dielectric constant and loss tangent variations are explained on the basis of Maxwell-Wagner interfacial polarization in accordance with Koops phenomenological theory. AC Conductivity varies in accordance to Jonscher law (σac = σdc + Aωn) and shows normal behavior shown by other ferrites. The observed behavior of these samples suggests that the materials are suitable for applications in microwave devices. Three wet chemical routes are compared and it can be concluded that samples synthesized by citrate method are showing higher dielectric constant, low loss and low conductivity, hence are better.
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