Standard

Structure and Relaxor Behavior of (0.5 − x)BiFeO3-0.5PbFe0.5Nb0.5O3-xPbTiO3 Ternary Ceramics. / Boldyrev, Nikita A.; Sitalo, Eugene I.; Shilkina, Lidia A. и др.
в: Ceramics-Switzerland, Том 6, № 3, 2023, стр. 1735-1748.

Результаты исследований: Вклад в журналСтатьяРецензирование

Harvard

Boldyrev, NA, Sitalo, EI, Shilkina, LA, Nazarenko, AV, Ushakov, AD, Shur, VY, Reznichenko, LA & Glazunova, EV 2023, 'Structure and Relaxor Behavior of (0.5 − x)BiFeO3-0.5PbFe0.5Nb0.5O3-xPbTiO3 Ternary Ceramics', Ceramics-Switzerland, Том. 6, № 3, стр. 1735-1748. https://doi.org/10.3390/ceramics6030106

APA

Boldyrev, N. A., Sitalo, E. I., Shilkina, L. A., Nazarenko, A. V., Ushakov, A. D., Shur, V. Y., Reznichenko, L. A., & Glazunova, E. V. (2023). Structure and Relaxor Behavior of (0.5 − x)BiFeO3-0.5PbFe0.5Nb0.5O3-xPbTiO3 Ternary Ceramics. Ceramics-Switzerland, 6(3), 1735-1748. https://doi.org/10.3390/ceramics6030106

Vancouver

Boldyrev NA, Sitalo EI, Shilkina LA, Nazarenko AV, Ushakov AD, Shur VY и др. Structure and Relaxor Behavior of (0.5 − x)BiFeO3-0.5PbFe0.5Nb0.5O3-xPbTiO3 Ternary Ceramics. Ceramics-Switzerland. 2023;6(3):1735-1748. doi: 10.3390/ceramics6030106

Author

Boldyrev, Nikita A. ; Sitalo, Eugene I. ; Shilkina, Lidia A. и др. / Structure and Relaxor Behavior of (0.5 − x)BiFeO3-0.5PbFe0.5Nb0.5O3-xPbTiO3 Ternary Ceramics. в: Ceramics-Switzerland. 2023 ; Том 6, № 3. стр. 1735-1748.

BibTeX

@article{c34954773d7044ed843b1820fa87626a,
title = "Structure and Relaxor Behavior of (0.5 − x)BiFeO3-0.5PbFe0.5Nb0.5O3-xPbTiO3 Ternary Ceramics",
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.",
author = "Boldyrev, {Nikita A.} and Sitalo, {Eugene I.} and Shilkina, {Lidia A.} and Nazarenko, {Alexander V.} and Ushakov, {Andrei D.} and Shur, {Vladimir Y.} and Reznichenko, {Larisa A.} and Glazunova, {Ekaterina V.}",
note = "This research was funded by the Ministry of Science and Higher Education of the Russian Federation (a state task in the field of scientific activity in 2023). Project No. FENW-2023-0010/(GZ0110/23-11-IF).",
year = "2023",
doi = "10.3390/ceramics6030106",
language = "English",
volume = "6",
pages = "1735--1748",
journal = "Ceramics-Switzerland",
issn = "2571-6131",
publisher = "Multidisciplinary Digital Publishing Institute (MDPI)",
number = "3",

}

RIS

TY - JOUR

T1 - Structure and Relaxor Behavior of (0.5 − x)BiFeO3-0.5PbFe0.5Nb0.5O3-xPbTiO3 Ternary Ceramics

AU - Boldyrev, Nikita A.

AU - Sitalo, Eugene I.

AU - Shilkina, Lidia A.

AU - Nazarenko, Alexander V.

AU - Ushakov, Andrei D.

AU - Shur, Vladimir Y.

AU - Reznichenko, Larisa A.

AU - Glazunova, Ekaterina V.

N1 - This research was funded by the Ministry of Science and Higher Education of the Russian Federation (a state task in the field of scientific activity in 2023). Project No. FENW-2023-0010/(GZ0110/23-11-IF).

PY - 2023

Y1 - 2023

N2 - 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.

AB - 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.

UR - http://www.scopus.com/inward/record.url?partnerID=8YFLogxK&scp=85172216645

UR - https://gateway.webofknowledge.com/gateway/Gateway.cgi?GWVersion=2&SrcAuth=tsmetrics&SrcApp=tsm_test&DestApp=WOS_CPL&DestLinkType=FullRecord&KeyUT=001073406700001

U2 - 10.3390/ceramics6030106

DO - 10.3390/ceramics6030106

M3 - Article

VL - 6

SP - 1735

EP - 1748

JO - Ceramics-Switzerland

JF - Ceramics-Switzerland

SN - 2571-6131

IS - 3

ER -

ID: 45996110