Phase composition, microstructure, and thermophysical and dielectric properties of multiferroic Bi1−xDyxFeO3


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Abstract

An extensive study was performed to establish correlations between the crystal structure, the grain composition, and the dielectric and thermophysical properties of high-temperature multiferroics of the Bi1−x Dyx FeO3 type (x = = 0.05–0.20). It is shown that a trade-off between the macroresponses in the materials is achieved at x = 0.10; this circumstance permits recommendation of the materials for practical use.

About the authors

S. V. Khasbulatov

Research Institute of Physics

Author for correspondence.
Email: said_vahaevich@mail.ru
Russian Federation, Rostov-on-Don

A. A. Pavelko

Research Institute of Physics

Email: said_vahaevich@mail.ru
Russian Federation, Rostov-on-Don

L. A. Shilkina

Research Institute of Physics

Email: said_vahaevich@mail.ru
Russian Federation, Rostov-on-Don

L. A. Reznichenko

Research Institute of Physics

Email: said_vahaevich@mail.ru
Russian Federation, Rostov-on-Don

G. G. Gadjiev

Amirkhanov Institute of Physics

Email: said_vahaevich@mail.ru
Russian Federation, Makhachkala

A. G. Bakmaev

Amirkhanov Institute of Physics

Email: said_vahaevich@mail.ru
Russian Federation, Makhachkala

M. -R. M. Magomedov

Amirkhanov Institute of Physics

Email: said_vahaevich@mail.ru
Russian Federation, Makhachkala

Z. M. Omarov

Amirkhanov Institute of Physics

Email: said_vahaevich@mail.ru
Russian Federation, Makhachkala

V. A. Aleshin

Research Institute of Physics

Email: said_vahaevich@mail.ru
Russian Federation, Rostov-on-Don

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