Publication | Closed Access
Synthesis, characterization and antistructure modeling of Ni nano ferrite
47
Citations
14
References
2018
Year
Materials ScienceMagnetismFerromagnetismMagnetic PropertiesEngineeringNanotechnologyCation DistributionNatural SciencesApplied PhysicsMagnetic ResonanceX-ray DiffractionMossbauer SpectroscopyAntistructure ModelingMagnetic PropertyDry GelMagnetic MaterialMagnetic MaterialsMicrostructure
We report the role played by cation distribution in determining magnetic properties by comparing dry gel, thermally annealed Ni ferrite prepared by sol-gel auto-combustion technique. X-ray diffraction (XRD), Fourier Transform Infrared Spectroscopy (FTIR), Scanning Electron Microscopy (SEM) and Mössbauer spectroscopy were used to characterize the samples. Both XRD and Mössbauer measurements validate the formation of spinel phase with grain diameter 39.13−45.53 nm. First time antistructural modeling for Ni ferrite is reported to get information on active surface centers. Decrease of Debye temperature θD in annealed sample shows enhancement of lattice vibrations. With thermal annealing experimental and Néel magnetic moment (nBe, nBN) increases, suggesting migration of Ni2+ from B to A site with concurrent migration of Fe3+ from A to B site (non-equilibrium cationic distribution), affecting magnetic properties.
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