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Covalency and Racah parameters of Fe3+ in Mn–Zn–Cr nanoferrites
Faculty
Science
Year:
2021
Type of Publication:
ZU Hosted
Pages:
Authors:
Mohammed Ahmed Abdu Abdullah
Staff Zu Site
Abstract In Staff Site
Journal:
Ceramics International ELSEVIER
Volume:
Keywords :
Covalency , Racah parameters , Fe3+ , Mn–Zn–Cr nanoferrites
Abstract:
This study presents the covalency and Racah parameter (B) of Fe3+ in Mn–Zn–Cr nanoferrites, which prepared by citrate–nitrate combustion method. Racah parameter was determined from the spectral data. The bands in the range of interest in optical absorbance are wide and asymmetric; a deconvolution (deconvolution to their component bands) of the experimental spectra becomes compulsory. Further, these spectra were employed to obtain Racah parameter. Racah parameter was decreased, with further Fe addition, from 540 to 441 cm-1. Also, nephelauxetic ratio (β) was decreased from 0.532 to 0.435. This denotes that the bonds of Fe3+ and its surroundings become more covalent (the covalency is increased).
Author Related Publications
Mohammed Ahmed Abdu Abdullah, "The structure, correlated vibrations, optical parameters and metallization criterion of Mn–Zn–Cr nanoferrites", Springer, 2021
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Mohammed Ahmed Abdu Abdullah, "Physical properties of Al-doped cobalt nanoferrite prepared by citrate–nitrate auto combustion method", Springer, 2021
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Mohammed Ahmed Abdu Abdullah, "Enhancing the magnetization, dielectric loss and photocatalytic activity of Co-Cu ferrite nanoparticles via the substitution of rare earth ions", ELSEVIER, 2021
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Mohammed Ahmed Abdu Abdullah, "Effect of iron oxide on the structural and optical properties of alumino-borate glasses", ELSEVIER, 2020
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Mohammed Ahmed Abdu Abdullah, "Impact of bismuth oxide on the structure, optical features and ligand field parameters of borosilicate glasses doped with nickel oxide", ELSEVIER, 2021
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