Structure and Relaxor Behavior of (0.5 − x)BiFeO3-0.5PbFe0.5Nb0.5O3-xPbTiO3 Ternary Ceramics

Author:

Boldyrev Nikita A.1,Sitalo Eugene I.1,Shilkina Lidia A.1,Nazarenko Alexander V.2,Ushakov Andrei D.3ORCID,Shur Vladimir Y.3ORCID,Reznichenko Larisa A.1,Glazunova Ekaterina V.1

Affiliation:

1. Research Institute of Physics, Southern Federal University, 344090 Rostov-on-Don, Russia

2. Southern Scientific Center, Russian Academy of Science, 344006 Rostov-on-Don, Russia

3. School of Natural Sciences and Mathematics, Ural Federal University, 620000 Ekaterinburg, Russia

Abstract

Ceramics of the quasi-binary concentration section (0.1 ≤ x ≤ 0.2, Δx = 0.025) of the ternary solid solution system (0.5 − x)BiFeO3-0.5PbFe0.5Nb0.5O3-xPbTiO3 were prepared by the conventional solid-phase reaction method. An X-ray study at different temperatures revealed that (0.5 − x)BF-0.5PFN-xPT ceramics have a cluster morphology. Clusters have different modulation, crystal lattice symmetry, and chemical composition. The presence of a cluster structure in a solid solution with heterovalent substitution, consisting of regions rich in Ti+4, Nb+5, or Fe3+, has led to the appearance of Maxwell–Wagner polarization in the studied ceramics. The study of the dielectric characteristics revealed the relaxor-like behavior of the studied ceramics. The grain morphology, dielectric, pyroelectric, and piezoelectric properties of the selected solid solutions were investigated. The highest piezoelectric coefficient, d33 = 280 pC/N, was obtained in the 0.3BiFeO3-0.5PbFe0.5Nb0.5O3-0.2PbTiO3 ceramics. Study of the dielectric characteristics of all samples revealed relaxor ferroelectric behavior and a region of diffuse phase transition from the paraelectric to ferroelectric phase in the temperature range of 140–170 °C.

Funder

Ministry of Science and Higher Education of the Russian Federation

Publisher

MDPI AG

Subject

Materials Science (miscellaneous),Ceramics and Composites

Reference58 articles.

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