Influence of the molar ratio Sr:Bi:Ta in bismuth-strontium tantalum films SryBi2+xTa2O9 on structure and electrophysical properties

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Polycrystalline thin films of bismuth-strontium tantalum SryBi2+xTa2O9 with different molar ratio Sr:Bi:Ta were obtained by sol-gel method. The formation of a phase with a perovskite structure has been established. Phase transitions have been confirmed by dielectric spectroscopy. In the mode of polarization switching spectroscopy, remnant piezoelectric hysteresis loops were obtained, which confirms the ferroelectric nature of the synthesized SryBi2+xTa2O9 films.

Sobre autores

D. Kiselev

Kotel’nikov Institute of Radio Engineering and Electronics (Fryazino Branch), Russian Academy of Sciences; National University of Science and Technology “MISIS”

Email: gvc@ms.ire.rssi.ru
Rússia, Fryazino, 141190; Moscow, 119049

E. Kurteva

National University of Science and Technology “MISIS”

Email: gvc@ms.ire.rssi.ru
Rússia, Moscow, 119049

A. Semchenko

F. Skorina Gomel State University

Email: gvc@ms.ire.rssi.ru
Belarus, Gomel, 246028

A. Boiko

Sukhoi State Technical University of Gomel

Email: gvc@ms.ire.rssi.ru
Belarus, Gomel, 246746

L. Sudnik

Powder Metallurgy Institute, Research Institute of Impulse Processes with Pilot Production

Email: gvc@ms.ire.rssi.ru
Rússia, Minsk, 220034

G. Chucheva

Kotel’nikov Institute of Radio Engineering and Electronics (Fryazino Branch), Russian Academy of Sciences

Autor responsável pela correspondência
Email: gvc@ms.ire.rssi.ru
Rússia, Fryazino, 141190

Bibliografia

  1. Muralt P., Polcawich R.G., Trolier-McKinstry S. // MRS Bulletin. 2009. V. 34. P. 658.
  2. Qiu Y., Gigliotti J.V., Wallace M. et al. // Sensors. 2015. V. 15. No. 4. P. 8020.
  3. Aabid A., Raheman M.A., Ibrahim Y.E. et al. // Sensors. 2021. V. 21. No. 2. P. 4145.
  4. Abdullaev D.A., Milovanov R.A., Volkov R.L. et al. // Russ. Technol. J. 2020. V. 8. No. 5. P. 44.
  5. Попов В.П., Антонов В.А., Тихоненко Ф.В. и др. // Изв. РАН. Сер. физ. 2023. Т. 87. № 6. С. 867; Popov V.P., Antonov V.A., Tikhonenko F.V. et al. // Bull. Russ. Acad. Sci. Phys. 2023. V. 87. No 6. P. 760.
  6. Li S., Wang Y., Yang M. et al. // Mater. Adv. 2022. V. 3. No. 14. P. 5735.
  7. Semchenko A.V., Ayvazyan G.Y., Malyutina-Bronskaya V.V. et. al. // Photonics. 2023. V. 10. P. 845.
  8. Semchenko A.V., Sidsky V.V. et. al. // Materials. 2021. V. 14. P. 1694.
  9. Bian J., Xue P., Zhu R. et al. // Appl. Mater. Today. 2020. V. 21. Art. No. 100789.
  10. Zanetti S.M., Bueno P.R., Leite E. et al. // J. Appl. Phys. 2001. V. 89. No. 6. P. 3416.

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