Synthesis and Luminescence Properties of Na2Al2B2O7:M (M = Dy3+, Sm3+)
Abstract
Dy3+ and Sm3+-doped Na2Al2B2O7 phosphors were synthesized at 850 ºC for 6 h in air. The phase analyses of all prepared borates were carried out using powder X-ray diffraction (XRD). A spectrofluorometer was used to examine the photoluminescence (PL) characteristics of the prepared phosphors at room temperature. When excited at 350 nm, Na2Al2B2O7:Dy3+ radiates at 481–491, 575–583, and 673 nm. After being excited at 402 nm, Na2Al2B2O7:Sm3+ radiates at 561, 603, 650, and 709 nm. As a result of this study, two new optical materials that emit light in the visible region were prepared.
About the Author
İ. PekgözlüTurkey
İlhan Pekgözlü
Faculty of Engineering; Department of Environmental Engineering
Karabük
References
1. İ. Pekgözlü, S. Çakar, J. Lumin., 132, 2312–2317 (2012).
2. İ. Pekgözlü, J. Appl. Spectrosc., 89, 799–802 (2022).
3. İ. Pekgözlü, J. Lumin., 134, 8–13 (2013).
4. N. Ye, W. R. Zeng, B. C. Wu, X. Y. Huang, T. Chen, Z. Kristallogr., 213, 452–453 (1998).
5. N. Ye, W. R. Zeng, J. Jiang, B. C. Wu, C. T. Chen, B. H. Feng, X. L. Zhang, J. Opt. Soc. Am. B, 17, No. 5, 764–768 (2000).
6. J. Chen, S. Zheng, X. Yang, Y. Lv, Y. Li, C. Chen, Elect. Mater. Lett., 16, 520–530 (2020).
7. Y. P. Manwar, R. S. Palaspagar, R. P. Sonekar, S. K. Omanwar, J. Mater. Sci: Mater. Electron., 28, 994–998 (2017).
8. R. S. Palaspagar, A.B. Gawande, R. P. Sonekar, S. K. Omanwar, J. Lumin., 154, 58–61 (2014).
9. R. S. Palaspagar, R. P. Sonekar, S. K. Omanwar, J. Mater. Sci.: Mater. Electron., 27, 4951–4958 (2016).
10. P. F. Rza-Zade, S. G. Guseinova, K. L. Ganf, G. K. Abdullaev, F. R. Samedov, Inorg. Mater., 7, 1135 (1971).
11. M. He, L. Kienle, A. Simon, X. L. Chen, V. Duppel, J. Solid State Chem., 177, 3212–3218 (2004).
12. J. H. Gao, W. B. Xia, R. K. Li, J. Phys. Chem. Solids, 68, 536–540 (2007).
13. M. He, X. L. Chen, T. Zhou, B. Q. Hu, Y. P. Xu, T. Xu, J. Alloys Compd., 327, 210–214 (2001).
14. I. M. Nagpure, K. N. Shinde, S. J. Dhoble, A. Kumar, J. Alloys Compd., 481, 632–638 (2009).
15. H. Choi, Ch. H. Kim, Ch. H. Pyun, S. J. Kim, J. Lumin., 82, 25–32 (1999).
16. P. Dorenbos, J. Lumin., 91, 91–106 (2000).
17. P. Dorenbos, J. Lumin., 91, 155–176 (2000).
18. G. S. R. Raju, J. Y. Park, H. C. Jung, B. K. Moon, J. H. Jeong, J. H. Kim, Curr. Appl. Phys., 9, e92–e95 (2009).
19. I. Omkaram, S. Buddhudu, Opt. Mater., 32, 8–11 (2009).
20. E. Cavalli, A. Belletti, R. Mahiou, P. Boutinaud, J. Lumin., 130, 733–736 (2010).
21. İ. Pekgözlü, H. Karabulut, A. Mergen, A. S. Başak, J. Appl. Spectrosc., 83, 504–511 (2016).
22. İ. Pekgözlü, Optik, 127, 4114–4117 (2016).
23. G. E. Malashkevich, I. M. Mel’nichenko, Phys. Solid State, 40, 420–426 (1998).
24. Y. Zhang, C. Lu, L. Sun, Z. Xu, Y. Ni, Mater. Res. Bull., 44, 179–183 (2009).
25. C. M. Reddy, G. R. Dillip, K. Mallikarjuna, S. Z. A. Ahamed, B. S. Reddy, B. P. Raju, J. Lumin., 131, 1368–1375 (2011).
26. K. Annapurna, R. N. Dwivedi, P. Kundu, S. Buddhudu, Mater. Res. Bull., 38, 429–436 (2003).
Review
For citations:
Pekgözlü İ. Synthesis and Luminescence Properties of Na2Al2B2O7:M (M = Dy3+, Sm3+). Zhurnal Prikladnoii Spektroskopii. 2024;91(5):758.