RAS Chemistry & Material ScienceЖурнал физической химии Russian Journal of Physical Chemistry

  • ISSN (Print) 0044-4537
  • ISSN (Online) 3034-5537

Peculiarities of Modified Ceramics (Na0.5Bi0.5)TiO3–BaTiO3–(K0.5Na0.5)NbO3

PII
10.31857/S0044453723050126-1
DOI
10.31857/S0044453723050126
Publication type
Status
Published
Authors
Volume/ Edition
Volume 97 / Issue number 5
Pages
712-717
Abstract
Single-phase ceramic samples with new compositions (1 – x – у)(Na0.5Bi0.5)TiO3–хBaTiO3–у(K0.5Na0.5)NbO3 (x = 0.05, у = 0–0.15) modified with ZnO and GeO2 additions were obtained by solid-phase synthesis. Their crystal structure, microstructure, and dielectric and local piezoelectric properties were studied. A phase with a perovskite structure with a pseudocubic unit cell was found to form in all of the synthesized samples; it was shown that the unit cell volume increased as a result of the partial replacement of base cations by complex additive cations. The ferroelectric phase transitions were confirmed by dielectric spectroscopy. Residual piezoelectric hysteresis loops were obtained for the synthesized samples in the polarization switching spectroscopy mode, which confirmed the switching of ferroelectric polarization.
Keywords
керамика структура перовскита микроструктура диэлектрические свойства
Date of publication
12.09.2025
Year of publication
2025
Number of purchasers
0
Views
11

References

  1. 1. Gupta V., Sharma M., and Thakur N. // J. Intel. Mat. Sys. Str. 2010. V. 21. P. 1227.
  2. 2. Sodano H.A., Henry A., Inman D.J., Park G. // J. Intel. Mat. Sys. Str. 2005. V. 16. P. 799.
  3. 3. Sodano H.A., Park G., Inman D.J. // Strain. 2004. V. 40. P. 49.
  4. 4. Веневцев Ю.Н., Политова Е.Д., Иванов С.А. Сегнето- и антисегнетоэлектрики семейства титаната бария. М.: Химия, 1985, 256 с.
  5. 5. Zhang Sh.J., Eitel R.E., Randall C.A. et al. // Appl. Phys. Letters. 2005. V. 86. P. 262904.
  6. 6. Maeder M.D., Damjanovic D., and Setter N. // J. Electroceram. 2004. V. 13. P. 385.
  7. 7. Saito Y., Takao H., Tani I. et al. // Nature. 2004. V. 432. P. 84.
  8. 8. Takenaka T., Nagata H., Hiruma Y. et al. // J. Electroceram. 2007. V. 19. P. 259.
  9. 9. Takenaka T., Nagata H., and Hiruma Y. // Jpn. J. Appl. Phys. 2008. V. 47. P. 3787.
  10. 10. Rödel J., Jo W., Seifert T.P., Anton E.M. et al. // J. Am. Ceram. Soc. 2009. V. 92. P. 1153.
  11. 11. Panda P.K. // J. Mater. Sci. 2009. V. 44. P. 5049.
  12. 12. Bernard J., Bencan A., Rojac T. et al. // J. Am. Ceram. Soc. 2008. V. 91. P. 2409.
  13. 13. Smolenskii G.A., Isupov V.A., Agranovskaya A.I., Krainik N.N. // Sov. Phys. Solid State. 1961. V. 2. P. 2651.
  14. 14. Vakhrushev S.B., Isupov V.A., Kvyatkovsky B.E. et al. // Ferroelectrics. 1985. V. 63. P. 153.
  15. 15. Jones G.O., Thomas P.A. // Acta Crystallogr. Sect. B. 2002. V. 58. P. 168.
  16. 16. Hiruma Y., Nagata H., Takenaka T. // J. Appl. Phys. 2009. V. 105. P. 084112.
  17. 17. Chu B.-J., Chen D.-R., Li G.-R., Jin Q.-R. // J. of the European Ceramic Society. 2002. V. 22. P. 2115.
  18. 18. Nagata H., Yoshida M., Makiuchi Y., Takenaka T. // Jpn. J. Appl. Phys. Pt. 1. 2003. V. 42. 7401.
  19. 19. Ringgaard M.E., Wurlitzer T. // J. Eur. Ceram. Soc. 2005. V. 25. P. 2701.
  20. 20. Zuo R., Fang X., and Ye C. // Appl. Phys. Lett. 2007. V. 90. P. 092904.
  21. 21. Kounga A.B., Zhang S.T., Jo W. et al. // Appl. Phys. Lett. 2008. V. 92. P. 222902.
  22. 22. Xiao D.Q., Lin D.M., Zhu J.G., Yu P. // J. Electroceram. 2008. V. 21. P. 34.
  23. 23. Politova E.D., Golubko N.V., Kaleva G.M. et al. // J. of Advanced Dielectrics. 2018. V. 8. P. 1850004.
  24. 24. Politova E.D., Golubko N.V., Kaleva G.M. et al. // Ferroelectrics. 2019. V. 538. P. 45.
  25. 25. Белышева Т.В., Гатин А.К., Гришин М.В. и др. // Хим.физика. 2015. Т. 34. № 9. С. 56.
  26. 26. Громов В.Ф., Герасимов Г.Н., Белышева Т.В. и др. // Там же. 2018. Т. 37. № 1. С. 76. [Gromov V.F., Gerasimov G.N., Belysheva T.V. et al. // Ibid. 2018. V. 12. № 1. P. 129.]
  27. 27. Jones G.O., Thomas P.A. // Acta Crystallogr. Sect. B. 2002. V. 58. P. 168.
  28. 28. Dorcet V., Trolliard G., and Boullay P. // Chem. Mater. 2008. V. 20. P. 5061.
  29. 29. Tan X., Cheng M., Frederick J. et al. // J. Amer. Ceram. Soc. 2011. V. 94. P. 4091.
  30. 30. Shvartsman V.V., Lupascu D.C. // Ibid. V. 95. P. 1.
  31. 31. Bernard J., Bencan A., Rojac T. et al. // J. Am. Ceram. Soc. 2008. V. 91. P. 2409.
  32. 32. Politova E.D., Golubko N.V., Kaleva G.M. et al. // Ferroelectrics. 2019. V. 538 P. 45.
  33. 33. Lee H.J., Zhang S.H. Lead-Free Piezoelectrics. N.Y.: Springer, 2012. 291 p.
QR
Translate

Индексирование

Scopus

Scopus

Scopus

Crossref

Scopus

Higher Attestation Commission

At the Ministry of Education and Science of the Russian Federation

Scopus

Scientific Electronic Library