Preview

Zhurnal Prikladnoii Spektroskopii

Advanced search
Open Access Open Access  Restricted Access Subscription Access

Synthesis and Spectral-Luminescent Properties of Light-Accumulating Oxides HfO2-ZrO2

Abstract

Light-accumulating oxide systems HfO2−ZrO2 with the duration of afterglow up to 10 min were synthesized by the method of chemical deposition and their spectral-luminescent properties were investigated. It was found that the value of HfO2:ZrO2 ratio has a significant influence on the intensity and decay kinetics of visible luminescence of such systems, as well as on the values of the weight coefficients and the positions of individual components of the spectral bands of luminescence and its excitation. The result is explained by the contribution of complex optical centers of titanium impurity in ZrO2 to the intracenter luminescence of oxygen vacancies in HfO2 and competing with quenching of luminescence by nonradiative recombination centers.

About the Authors

G. E. Malashkevich
B. I. Stepanov Institute of Physics of the National Academy of Sciences of Belarus
Belarus

Minsk



Yu. V. Bokshits
Research Institute for Physical Chemical Problems of the Belarusian State University
Belarus

Minsk



E. A. Kovel
Research Institute for Physical Chemical Problems of the Belarusian State University
Belarus

Minsk



V. A. Zhuravkov
Research Institute for Physical Chemical Problems of the Belarusian State University
Belarus

Minsk



G. P. Shevchenko
Research Institute for Physical Chemical Problems of the Belarusian State University
Belarus

Minsk



V. V. Kouhar
B. I. Stepanov Institute of Physics of the National Academy of Sciences of Belarus
Belarus

Minsk



A. A. Ramanenka
B. I. Stepanov Institute of Physics of the National Academy of Sciences of Belarus
Belarus

Minsk



I. V. Stanishevsky
B. I. Stepanov Institute of Physics of the National Academy of Sciences of Belarus
Belarus

Minsk



References

1. T. Matsuzawa, Y. Aoki, N. Takeuchi, Y. Murayama. J. Electrochem. Soc., 143, N 8 (1996) 2670—2673

2. H. Takasaki, S. Tanabe, T. Hanada. J. Ceram. Soc. Japan, 104, N 1208 (1996) 322—326

3. Y. Li, M. Gecevicius, J. Qiu. Chem. Soc. Rev., 45, N 8 (2016) 2090—2136

4. T. Maldiney, A. Lecointre, B. Viana, A. Bessiere, M. Bessodes, D. Gourier, C. Richard, D. Scherman. J. Am. Chem. Soc., 133, N 30 (2011) 11810—11815

5. Y. Zhuang, L. Wang, Y. Lv, T. L. Zhou, R. J. Xie. Adv. Funct. Mater., 28, N 8 (2018) 1705769

6. K. Van den Eeckhout, D. Poelman, P. F. Smet. Materials, 6, N 7 (2013) 2789—2818

7. N. G. Petrik, D. P. Taylor, T. M. Orlando. J. Appl. Phys., 85, N 9 (1999) 6770—6776

8. X. Y. Zhang, C. H. Hsu, Y. S. Cho, S. Zhang, S. Y. Lien, W. Z. Zhu, F. B. Xiong. Thin Solid Films, 660 (2018) 797—801

9. L. Puust, V. Kiisk, K. Utt, H. Mändar, I. Sildos. Open Phys., 12, N 6 (2014) 415—420

10. K. Sawamura, K. Iwasaki, T. Nakanishi, F. Iwakura, Y. Nakajima, K. Katsumata, A. Yasumori. J. Ceram. Soc. Japan, 128, N 4 (2020) 175—180

11. V. Kiisk, L. Puust, K. Utt, A. Maaroos, H. Mändar, E.Viviani, F. Piccinelli, R. Saar, U. Joost, I. Sildos. J. Lumin., 174 (2016) 49—55

12. D. A. Pejaković. J. Lumin., 130, N 6 (2010) 1048—1054

13. Z. Wang, J. Zhang, G. Zheng, Y. Liu, Y. Zhao. J. Lumin., 132, N 11 (2012) 2817—2821

14. K. Smits, L. Grigorjeva, D. Millers, A. Sarakovskis, J. Grabis, W. Lojkowski. J. Lumin., 131, N 10 (2011) 2058—2062

15. B. Neppolian, Q. Wang, H. Yamashita, H. Choi. Appl. Catalysis A: General, 333, N 2 (2007) 264—271

16. А. А. Шакирова, Е. В. Дементьева, Т. Б. Попова, М. В. Заморянская. Опт. и спектр., 131, № 5 (2023) 621—625

17. https://en.wikipedia.org/wiki/Scilab

18. F. Gao, L. Han. Comp. Optim. and Appl., 51, N 1 (2012) 259—277

19. С. В. Булярский, К. И. Литвинова, Е. П. Кириленко, Г. А. Рудаков, А. А. Дудин. ФТТ, 65, № 2 (2023) 236—242

20. T. S. Wang, G. F. Wang, M. L. Qiu, W. Cheng, J. F. Zhang, G. Q. Zhao. J. Lumin., 237 (2021) 118133

21. Y. Cong, B. Li, S. Yue, D. Fan. J. Phys. Chem. C, 113, N 31 (2009) 13974—13978

22. В. Г. Заводинский. ФТТ, 60, № 10 (2018) 1861—1865


Review

For citations:


Malashkevich G.E., Bokshits Yu.V., Kovel E.A., Zhuravkov V.A., Shevchenko G.P., Kouhar V.V., Ramanenka A.A., Stanishevsky I.V. Synthesis and Spectral-Luminescent Properties of Light-Accumulating Oxides HfO2-ZrO2. Zhurnal Prikladnoii Spektroskopii. 2024;91(3):371-377. (In Russ.)

Views: 65


ISSN 0514-7506 (Print)