Dielectric properties of bismuth-containing pyrochlores: A comparative analysis

The comparative analysis of the dielectric properties of bismuth-containing pyrochlores with different manifestation of atomic order/disorder was carried out. We examined the dielectric properties (including behavior in electric fields) of two pyrochlore compounds: BZN (presumably a composition clos...

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Published in:Journal of Advanced Dielectrics
Main Authors: M. V. Talanov, E. V. Glazunova, V. I. Kozlov, S. P. Kubrin, A. A. Bush, V. M. Talanov, K. E. Kamentsev
Format: Article
Language:English
Published: World Scientific Publishing 2022-04-01
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Online Access:https://www.worldscientific.com/doi/10.1142/S2010135X21600171
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author M. V. Talanov
E. V. Glazunova
V. I. Kozlov
S. P. Kubrin
A. A. Bush
V. M. Talanov
K. E. Kamentsev
author_facet M. V. Talanov
E. V. Glazunova
V. I. Kozlov
S. P. Kubrin
A. A. Bush
V. M. Talanov
K. E. Kamentsev
author_sort M. V. Talanov
collection DOAJ
container_title Journal of Advanced Dielectrics
description The comparative analysis of the dielectric properties of bismuth-containing pyrochlores with different manifestation of atomic order/disorder was carried out. We examined the dielectric properties (including behavior in electric fields) of two pyrochlore compounds: BZN (presumably a composition close to [Formula: see text][Formula: see text][Formula: see text][Formula: see text] ceramics with chemical disorder in both A and B cation sublattices and Bi2Ti2O7 single crystal with fully chemical ordered structure. The fundamental differences between the dielectric properties of the BZN ceramics and Bi2Ti2O7 single crystal were shown. In particular, in the dielectric relaxation behavior (which cannot be described via Arrhenius law in the Bi2Ti2[Formula: see text] or in the influence of the electric fields on the dielectric permittivity (splitting of the field-cooled and zero-field-cooled behaviors was observed for Bi2Ti2O7 below estimated freezing temperature). The results of this study highlights the special role of Bi2Ti2O7 as a candidate material for studying aspects of geometric frustration related with pyrochlore structure in non-magnetic medium and specifies the future directions of research.
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spelling doaj-art-6f84591cbf7644dbbb8eaf287c3c8c652025-08-19T21:03:01ZengWorld Scientific PublishingJournal of Advanced Dielectrics2010-135X2010-13682022-04-01120210.1142/S2010135X21600171Dielectric properties of bismuth-containing pyrochlores: A comparative analysisM. V. Talanov0E. V. Glazunova1V. I. Kozlov2S. P. Kubrin3A. A. Bush4V. M. Talanov5K. E. Kamentsev6Research Institute of Physics, Southern Federal University, av. Stachki 193, Rostov-on-Don, 344090, RussiaResearch Institute of Physics, Southern Federal University, av. Stachki 193, Rostov-on-Don, 344090, RussiaResearch Institute of Solid State Electronics Materials, MIREA-Russian Technological University (RTU MIREA), 5th Street of Sokolinaya Gora 22, Moscow, 119454, RussiaResearch Institute of Physics, Southern Federal University, av. Stachki 193, Rostov-on-Don, 344090, RussiaResearch Institute of Solid State Electronics Materials, MIREA-Russian Technological University (RTU MIREA), 5th Street of Sokolinaya Gora 22, Moscow, 119454, RussiaTechnological Department, Platov South-Russian State Polytechnic University (NPI), Prosvescheniya Str. 132, Novocherkassk, 346428, RussiaResearch Institute of Solid State Electronics Materials, MIREA-Russian Technological University (RTU MIREA), 5th Street of Sokolinaya Gora 22, Moscow, 119454, RussiaThe comparative analysis of the dielectric properties of bismuth-containing pyrochlores with different manifestation of atomic order/disorder was carried out. We examined the dielectric properties (including behavior in electric fields) of two pyrochlore compounds: BZN (presumably a composition close to [Formula: see text][Formula: see text][Formula: see text][Formula: see text] ceramics with chemical disorder in both A and B cation sublattices and Bi2Ti2O7 single crystal with fully chemical ordered structure. The fundamental differences between the dielectric properties of the BZN ceramics and Bi2Ti2O7 single crystal were shown. In particular, in the dielectric relaxation behavior (which cannot be described via Arrhenius law in the Bi2Ti2[Formula: see text] or in the influence of the electric fields on the dielectric permittivity (splitting of the field-cooled and zero-field-cooled behaviors was observed for Bi2Ti2O7 below estimated freezing temperature). The results of this study highlights the special role of Bi2Ti2O7 as a candidate material for studying aspects of geometric frustration related with pyrochlore structure in non-magnetic medium and specifies the future directions of research.https://www.worldscientific.com/doi/10.1142/S2010135X21600171Pyrochloresrelaxor behaviorbismuth titanatedielectric permittivitygeometric frustration
spellingShingle M. V. Talanov
E. V. Glazunova
V. I. Kozlov
S. P. Kubrin
A. A. Bush
V. M. Talanov
K. E. Kamentsev
Dielectric properties of bismuth-containing pyrochlores: A comparative analysis
Pyrochlores
relaxor behavior
bismuth titanate
dielectric permittivity
geometric frustration
title Dielectric properties of bismuth-containing pyrochlores: A comparative analysis
title_full Dielectric properties of bismuth-containing pyrochlores: A comparative analysis
title_fullStr Dielectric properties of bismuth-containing pyrochlores: A comparative analysis
title_full_unstemmed Dielectric properties of bismuth-containing pyrochlores: A comparative analysis
title_short Dielectric properties of bismuth-containing pyrochlores: A comparative analysis
title_sort dielectric properties of bismuth containing pyrochlores a comparative analysis
topic Pyrochlores
relaxor behavior
bismuth titanate
dielectric permittivity
geometric frustration
url https://www.worldscientific.com/doi/10.1142/S2010135X21600171
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