Crystal structure, microstructure, electrophysical properties, and thermally induced aging of PZT-CdNb2O6ceramics

Solid solution samples of the three-component system (1 − [Formula: see text])Pb(Ti[Formula: see text]Zr[Formula: see text])O[Formula: see text]CdNb2O6 with [Formula: see text] = 0.0125–0.0500, [Formula: see text][Formula: see text] = 0.0125 were obtained by solid phase synthesis followed by sinteri...

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Үндсэн зохиолчид: Andryushin Konstantin, Pavelko Alexey, Sahoo Sushrisangita, Shilkina Lidiya, Nagaenko Alxandr, Andryushina Inna, Moysa Maksim, Reznichenko Larisa
Формат: Өгүүллэг
Хэл сонгох:English
Хэвлэсэн: World Scientific Publishing 2022-10-01
Цуврал:Journal of Advanced Dielectrics
Нөхцлүүд:
Онлайн хандалт:https://www.worldscientific.com/doi/10.1142/S2010135X22440052
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author Andryushin Konstantin
Pavelko Alexey
Sahoo Sushrisangita
Shilkina Lidiya
Nagaenko Alxandr
Andryushina Inna
Moysa Maksim
Reznichenko Larisa
author_facet Andryushin Konstantin
Pavelko Alexey
Sahoo Sushrisangita
Shilkina Lidiya
Nagaenko Alxandr
Andryushina Inna
Moysa Maksim
Reznichenko Larisa
author_sort Andryushin Konstantin
collection DOAJ
description Solid solution samples of the three-component system (1 − [Formula: see text])Pb(Ti[Formula: see text]Zr[Formula: see text])O[Formula: see text]CdNb2O6 with [Formula: see text] = 0.0125–0.0500, [Formula: see text][Formula: see text] = 0.0125 were obtained by solid phase synthesis followed by sintering using conventional ceramic technology. The crystal structure, microstructure, electrophysical, and thermophysical properties of these ceramics have been studied. It is shown that all studied solid solutions can be divided into two groups (with [Formula: see text] = 0.0125 and with [Formula: see text] 0.0125), characterized by different characteristics of the change in properties with variations in external influences. This is probably due to the transition from a perovskite-type structure with a tetragonal (T) unit cell to inhomogeneous solid solutions consisting of a series of T-phases with similar cell parameters. A conclusion is made about the expediency of using the data obtained in the development of similar materials for devices based on them.
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spelling doaj.art-154abe2fea6c49c6afcd944d69b069b52022-12-22T04:35:21ZengWorld Scientific PublishingJournal of Advanced Dielectrics2010-135X2010-13682022-10-01120510.1142/S2010135X22440052Crystal structure, microstructure, electrophysical properties, and thermally induced aging of PZT-CdNb2O6ceramicsAndryushin Konstantin0Pavelko Alexey1Sahoo Sushrisangita2Shilkina Lidiya3Nagaenko Alxandr4Andryushina Inna5Moysa Maksim6Reznichenko Larisa7Research Institute of Physics, Southern Federal University, Rostov-on-Don, 344090, Stachki str. 194, RussiaResearch Institute of Physics, Southern Federal University, Rostov-on-Don, 344090, Stachki str. 194, RussiaResearch Institute of Physics, Southern Federal University, Rostov-on-Don, 344090, Stachki str. 194, RussiaResearch Institute of Physics, Southern Federal University, Rostov-on-Don, 344090, Stachki str. 194, RussiaInstitute of High Technology and Piezo Technic, Southern Federal University, Rostov-on-Don, 344090, Milchakova 10, RussiaResearch Institute of Physics, Southern Federal University, Rostov-on-Don, 344090, Stachki str. 194, RussiaResearch Institute of Physics, Southern Federal University, Rostov-on-Don, 344090, Stachki str. 194, RussiaResearch Institute of Physics, Southern Federal University, Rostov-on-Don, 344090, Stachki str. 194, RussiaSolid solution samples of the three-component system (1 − [Formula: see text])Pb(Ti[Formula: see text]Zr[Formula: see text])O[Formula: see text]CdNb2O6 with [Formula: see text] = 0.0125–0.0500, [Formula: see text][Formula: see text] = 0.0125 were obtained by solid phase synthesis followed by sintering using conventional ceramic technology. The crystal structure, microstructure, electrophysical, and thermophysical properties of these ceramics have been studied. It is shown that all studied solid solutions can be divided into two groups (with [Formula: see text] = 0.0125 and with [Formula: see text] 0.0125), characterized by different characteristics of the change in properties with variations in external influences. This is probably due to the transition from a perovskite-type structure with a tetragonal (T) unit cell to inhomogeneous solid solutions consisting of a series of T-phases with similar cell parameters. A conclusion is made about the expediency of using the data obtained in the development of similar materials for devices based on them.https://www.worldscientific.com/doi/10.1142/S2010135X22440052PZTCdNb2O6XRDmicrostructurepiezoelectric propertiesthermophysical properties
spellingShingle Andryushin Konstantin
Pavelko Alexey
Sahoo Sushrisangita
Shilkina Lidiya
Nagaenko Alxandr
Andryushina Inna
Moysa Maksim
Reznichenko Larisa
Crystal structure, microstructure, electrophysical properties, and thermally induced aging of PZT-CdNb2O6ceramics
Journal of Advanced Dielectrics
PZT
CdNb2O6
XRD
microstructure
piezoelectric properties
thermophysical properties
title Crystal structure, microstructure, electrophysical properties, and thermally induced aging of PZT-CdNb2O6ceramics
title_full Crystal structure, microstructure, electrophysical properties, and thermally induced aging of PZT-CdNb2O6ceramics
title_fullStr Crystal structure, microstructure, electrophysical properties, and thermally induced aging of PZT-CdNb2O6ceramics
title_full_unstemmed Crystal structure, microstructure, electrophysical properties, and thermally induced aging of PZT-CdNb2O6ceramics
title_short Crystal structure, microstructure, electrophysical properties, and thermally induced aging of PZT-CdNb2O6ceramics
title_sort crystal structure microstructure electrophysical properties and thermally induced aging of pzt cdnb2o6ceramics
topic PZT
CdNb2O6
XRD
microstructure
piezoelectric properties
thermophysical properties
url https://www.worldscientific.com/doi/10.1142/S2010135X22440052
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