Synthesis and Testing of BaZrGe3O9 : Mn4+ for Application as a Red-Emitting Phosphor
Wang X.1, Zhai M.1, Ivanovskikh K. V.2, Guo H.1, Huang P.1, Cui C.1, Wang L.1, Shi Q.1
1College of Physics and Optoelectronics, Taiyuan University of Technology, Taiyuan, China
2Department of Experimental Physics, Ural Federal University, Ekaterinburg, Russia
Email: shiqiufeng@tyut.edu.cn

PDF
A series of novel red-emitting phosphors BaZrGe3O9 : Mn4+ (BZG : Mn4+) were synthesized through high-temperature solid-state reaction method in order to explore their capabilities for application as red-emitting phosphors. The phosphors were characterized by X-ray diffraction, photoluminescence spectra, and decay curve measurements at the temperature ranging from 80 to 500 K. The luminescence intensity increases to maximum at doping concentration of 0.2 mol.%, and then decreases with concentration. Serious thermal quenching was also revealed. Keywords: red-emitting phosphor, germanate, Mn4+, concentration quenching, thermal stability.
  1. W. Zhang, M. He, X. Qiao, X. Fan. Chinese J. Lumin. 42, 9, 1345 (2021)
  2. M.G. Brik, C. Ma, A.M. Srivastava, M. Piasecki. Chinese J. Lumin. 41, 1011 (2020)
  3. Q. Zhou, L. Dolgov, A.M. Srivastava, L. Zhou, Z. Wang, J. Shi, M.D. Dramicanin, M.G. Brik, M. Wu. J. Mater. Chem. C 6, 11, 2652 (2018)
  4. T. Senden, E.J. van Harten, A. Meijerink. J. Lumin. 194, 131 (2018)
  5. H. Zhu, C.C. Lin, W. Luo, S. Shu, Z. Liu, Y. Liu, J. Kong, E. Ma, Y. Cao, R.-S. Liu, X. Chen. Nature Commun. 5, 4312 (2014)
  6. B. Henderson, G.F. Imbusch. Optical spectroscopy of inorganic solids. Oxford University Press (2006)
  7. S. Adachi. ECS J. Solid State Sci. Technol. 9, 1, 016001 (2020)
  8. T. Senden, R.J.A. van Dijk-Moes, A. Meijerink. Light: Sci. Appl. 7, 8 (2018)
  9. S. Adachi. ECS J. Solid State Sci. Technol. 10, 2, 026002 (2021)
  10. S. Adachi. ECS J. Solid State Sci. Technol. 11, 3, 036001 (2022)
  11. S. Adachi. ECS J. Solid State Sci. Technol. 10, 12, 128501 (2021)
  12. S. Adachi. ECS J. Solid State Sci. Technol. 10, 7, 076007 (2021)
  13. S. Yan. ECS J. Solid State Sci. Technol. 9, 10, 106004 (2020)
  14. T. Jansen, J. Gorobez, M. Kirm, M.G. Brik, S. Vielhauer, M. Oja, N.M. Khaidukov, V.N. Makhov, T. Justel. ECS J. Solid State Sci. Technol. 7, 1, R3086 (2017)
  15. Q. Zhang, X. Wang, X. Ding, Y. Wang. lnorg. Chem. 56, 12, 6990 (2017)
  16. S. Tian, B. Liu, L. Zhao, Z. Liu, X. Fan, L. Yang, Q. Min, H. Zhang, X. Yu, J. Qiu, X. Xu. J. Alloys Compd. 800, 224 (2019)
  17. L. Zhang, L. Dong, Y. Xu, S. Yin, H. You. J. Lumin. 236, 118084 (2021)
  18. D. Hou, H. Lin, Y. Zhang, J.-Y. Li, H. Li, J. Dong, Z. Lin, R. Huang. Inorg. Chem. Front. 8, 9, 2333 (2021)
  19. R.D. Shannon. Acta Crystallogr. A 32, 5, 751 (1976)
  20. S. Adachi. ECS J. Solid State Sci. Technol. 9, 2, 026003 (2020)
  21. S. Shionoya, W.M. Yen, H. Yamamoto. In: Fundamentals of luminescence / Ed. E. Nakazawa. CRC Press, Boca Raton, USA (2007)

Подсчитывается количество просмотров абстрактов ("html" на диаграммах) и полных версий статей ("pdf"). Просмотры с одинаковых IP-адресов засчитываются, если происходят с интервалом не менее 2-х часов.

Дата начала обработки статистических данных - 27 января 2016 г.

Publisher:

Ioffe Institute

Institute Officers:

Director: Sergei V. Ivanov

Contact us:

26 Polytekhnicheskaya, Saint Petersburg 194021, Russian Federation
Fax: +7 (812) 297 1017
Phone: +7 (812) 297 2245
E-mail: post@mail.ioffe.ru