X-Ray Diffraction and Mössbauer Studies of the Structural Features of BiFe1 ‒ xZnxO3 Multiferroics


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Abstract

The structure of ceramic BiFe1‒xZnxO3 multiferroic samples is investigated using the X-ray diffraction method and Mössbauer spectroscopy. X-ray diffraction analysis of the samples indicates the existence of the Bi12(Bi0.5Fe0.5)O19.5 impurity phase. High-temperature heating of the samples generates additional phases. The parameters of the Mössbauer spectra depend on the zinc concentration. In this case, for pure bismuth ferrite, the spectrum is a superposition between two Zeeman sextets and two paramagnetic doublets arising from two nonequivalent magnetic and electrical positions occupied by iron ions at the crystallattice sites of a sample. The replacement of iron ions with zinc ions substantially affects the spectrum parameters. This is probably related to changes in the spin-cycloid structure typical of multiferroics, the destruction of which stimulates the appearance of significant magnetoelectric interactions.

About the authors

A. A. Amirov

Amirkhanov Institute of Physics, Dagestan Scientific Centre; Interdisciplinary Reference Centre: Functionalized Magnetic Materials for Energy and Biomedical Applications (FunMagMa)

Author for correspondence.
Email: amiroff_a@mail.ru
Russian Federation, Makhachkala, 367003; Kaliningrad, 236041

M. M. Guseynov

Amirkhanov Institute of Physics, Dagestan Scientific Centre

Email: amiroff_a@mail.ru
Russian Federation, Makhachkala, 367003

D. M. Yusupov

Amirkhanov Institute of Physics, Dagestan Scientific Centre

Email: amiroff_a@mail.ru
Russian Federation, Makhachkala, 367003

N. Z. Abdulkadirova

Amirkhanov Institute of Physics, Dagestan Scientific Centre

Email: amiroff_a@mail.ru
Russian Federation, Makhachkala, 367003

Y. A. Chaudhary

Department of Physics, School of Physical Sciences

Email: amiroff_a@mail.ru
India, Jalgaon, Maharashtra, 425001

S. T. Bendre

Department of Physics, School of Physical Sciences

Email: amiroff_a@mail.ru
India, Jalgaon, Maharashtra, 425001

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