Preview

Newsletter of North-Caucasus Federal University

Advanced search

STUDY OF ELECTROLUMINESCENCE OF STRUCTURE BASED ON ZnS:Cu,Cl WITH PHOTOCONVERTER Y3Al5O12:Ce

Abstract

The work presents the study of calorimetric and spectral parameters of radiation, generated with electroexcitation structure based on luminophore ZnS:Cu,Cl and layer of Yfl(O12:Ce. Basing on electroluminescence spectra of ZnS:Cu,Cl and photoexcitation spectra of Yfl(O12:Ce, we have made conclusion of usability of YflfO12:Ce for high efficiency transform ZnS:Cu,Cl electroluminescence in white light. Luminescence spectra of researched structure is measured into wide range of exciting voltage frequency. The frequency characteristic of electroluminescence is determined and limited frequency of exciting voltage for appearing of white light in the structure is established.

About the Authors

Leonid Vasilievich Mikhnev
North-Caucasus Federal University
Russian Federation


Evgheny Alekseevich Bondarenko
North-Caucasus Federal University
Russian Federation


Dmitry Petrovich Valyukhov
North-Caucasus Federal University
Russian Federation


OlegMikhailovich Chapura
North-Caucasus Federal University
Russian Federation


Alexey Alexandrovich Skomorokhov
North-Caucasus Federal University
Russian Federation


Elena Vasilyevna Pankova
North-Caucasus Federal University
Russian Federation


Ilia Vladimirovich Nemov
North-Caucasus Federal University
Russian Federation


Egor Aleksandrovich Dyakov
North-Caucasus Federal University
Russian Federation


References

1. Chen J., Cranton W., Fihn M. Handbook of visual display technology. New York: Willey, 2012. 2738 p.

2. Withnall R. AC powder electroluminescent displays / R. Withnall, J. Silver, P. G. Harris, T. G. Ireland, P. J. Marsh // Journal of the SID. 2011. Vol. 19. Pp. 798-810.

3. Jayaraj M. K., Vallabhan C. P. G. A study of the white electroluminescence in ZnS:Cu,Pr,Cl phosphors // J. Phys. D.: Appl. Phys. 1989. Vol. 22. Pp. 1380-1383.

4. Park J. H. White-electroluminescent device with ZnS:Mn,Cu,Cl phosphor / J. H. Park, S. H. Lee, J. S. Kim, A. K. Kwon, H. L. Park, S. D. Han // Journal of Luminescence. 2007. Vol. 126. Pp. 566-570.

5. Stupca M. Silicon nanoparticles-ZnS nanophosphors for ultraviolet-based white light emittimg diode / M. Stupca, O. M. Nayfeh, T. Hoang, M. H. Nayfeh, B. Alhreish, J. Boparai, A. Aidwayyan, M. Alsaihi // J. of Appl. phys. 2012. Vol. 112. Pр. 074313.

6. Bachmann V., Ronda C., Meijerink A. Temperature quenching of yellow Ce3+ luminescence in YAG:Ce // Chem. Mat. 2009. Vol. 21. Pp. 2077-2084.

7. Nishiura S. Properties of transparent Ce: YAG ceramic phosphors for white LED / S. Nishiura, S. Tanabe, K. Fujioka, Y. Fujimoto // Optical materials. 2011. Vol. 33. Pp. 688-691.

8. Вакалов Д. С., Крандиевский С. О., Михнев Л. В. Разработка установки для исследования люминесцентных и фотоэлектрических характеристик мелкодисперсных порошковых кристаллофосфоров // Вестник СевКавГТУ 2011. № 4(29). С. 6-11.

9. Михнев Л. В. Фото- и электровозбуждение центров свечения в дисперсных системах на основе соединений ZnS:Cu (Cl, Al) и SrTiO3:Pr3+, Al: дис.. д-ра физ.-мат. наук. Ставрополь, 2007. 302 с.


Review

For citations:


Mikhnev L.V., Bondarenko E.A., Valyukhov D.P., Chapura O., Skomorokhov A.A., Pankova E.V., Nemov I.V., Dyakov E.A. STUDY OF ELECTROLUMINESCENCE OF STRUCTURE BASED ON ZnS:Cu,Cl WITH PHOTOCONVERTER Y3Al5O12:Ce. Newsletter of North-Caucasus Federal University. 2017;(6):25-31. (In Russ.)

Views: 100


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 2307-907X (Print)