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Structural, Dielectric and Raman Spectroscopy of La<sup>3+</sup>–Ni<sup>2+</sup>–Zn<sup>2+</sup> Substituted M‐Type Strontium Hexaferrites

Ibrahim Murtala MusaDepartment of Physics Faculty of Science Federal University Dutse P.M.B. 7156 Dutse Jigawa NigeriaYunusa AbduDepartment of Physics Bayero University Kano P. M. B. 3011 Kano Kano NigeriaJ. MohammedDepartment of Physics Faculty of Science Federal University Dutse P.M.B. 7156 Dutse Jigawa NigeriaAjeet Kumar SrivastavaDepartment of Physics School of Physical Sciences and Chemical Engineering Lovely Professional University Phagwara Punjab 144411 India
2021en
ABI

Аннотация

Abstract In this work, M‐type strontium nanohexaferrites with chemical composition Ba 0.8− x Sr 0 . 2 La x Fe 12− x − y Ni x Zn y O 19 ( x = 0.00, 0.05, 0.10; y = 0.00, 0.08, 0.16) are prepared using sol–gel auto‐combustion technique. The formation of single phase hexagonal ferrites is confirmed from XRD analysis. It also reveals the presence of magnetite and the crystallites sizes are in the range of 21.31–29.91nm. The lattice constants are found to decrease with an increase in cation substitution. The FTIR spectra of the sample show three dominant peaks in the range of 400–600 cm –1 which indicate the formation of the desired hexaferrite structure. The field emission scanning electron microscope images reveal large crystallites with shapes close to the hexagonal platelet‐like whose sizes are nonuniformly distributed. Also, agglomeration is observed due to magnetic interactions between the crystallites. The dielectric constant, dielectric loss, conductivity, and dielectric modulus are analyzed using the Maxwell–Wagner model. Dielectric constant is enhanced at high frequency in the entire sample and reduction of dielectric loss is also observed with further cations substitutions.

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