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Article

Effect of Gd3+, La3+, Lu3+ Co-Doping on the Morphology and Luminescent Properties of NaYF4:Sm3+ Phosphors

by
Viktor G. Nosov
1,
Anna A. Betina
1,
Tatyana S. Bulatova
1,
Polina B. Guseva
1,
Ilya E. Kolesnikov
1,
Sergey N. Orlov
1,2,3,
Maxim S. Panov
1,4,
Mikhail N. Ryazantsev
1,5,
Nikita A. Bogachev
1,
Mikhail Yu Skripkin
1,* and
Andrey S. Mereshchenko
1,*
1
Saint-Petersburg State University, 7/9 Universitetskaya Emb., 199034 St. Petersburg, Russia
2
Federal State Unitary Enterprise “Alexandrov Research Institute of Technology”, 72 Koporskoe Shosse, 188540 Sosnovy Bor, Russia
3
Institute of Nuclear Industry, Peter the Great St. Petersburg Polytechnic University (SPbSU), 29, Polytechnicheskaya Street, 195251 St. Petersburg, Russia
4
Center for Biophysical Studies, Saint Petersburg State Chemical Pharmaceutical University, 14 Professor Popov Str., Lit. A, 197022 St. Petersburg, Russia
5
Nanotechnology Research and Education Centre RAS, Saint Petersburg Academic University, 8/3 Khlopina Street, 194021 St. Petersburg, Russia
*
Authors to whom correspondence should be addressed.
Materials 2023, 16(6), 2157; https://doi.org/10.3390/ma16062157
Submission received: 11 February 2023 / Revised: 3 March 2023 / Accepted: 6 March 2023 / Published: 7 March 2023

Abstract

The series of luminescent NaYF4:Sm3+ nano- and microcrystalline materials co-doped by La3+, Gd3+, and Lu3+ ions were synthesized by hydrothermal method using rare earth chlorides as the precursors and citric acid as a stabilizing agent. The phase composition of synthesized compounds was studied by PXRD. All synthesized materials except ones with high La3+ content (where LaF3 is formed) have a β-NaYF4 crystalline phase. SEM images demonstrate that all particles have shape of hexagonal prisms. The type and content of doping REE significantly effect on the particle size. Upon 400 nm excitation, phosphors exhibit distinct emission peaks in visible part of the spectrum attributed to 4G5/26HJ transitions (J = 5/2–11/2) of Sm3+ ion. Increasing the samarium (III) content results in concentration quenching by dipole–dipole interactions, the optimum Sm3+concentration is found to be of 2%. Co-doping by non-luminescent La3+, Gd3+ and Lu3+ ions leads to an increase in emission intensity. This effect was explained from the Sm3+ local symmetry point of view.
Keywords: luminescence; microcrystals; nanocrystals; hydrothermal synthesis; rare earth; samarium; co-doping luminescence; microcrystals; nanocrystals; hydrothermal synthesis; rare earth; samarium; co-doping

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MDPI and ACS Style

Nosov, V.G.; Betina, A.A.; Bulatova, T.S.; Guseva, P.B.; Kolesnikov, I.E.; Orlov, S.N.; Panov, M.S.; Ryazantsev, M.N.; Bogachev, N.A.; Skripkin, M.Y.; et al. Effect of Gd3+, La3+, Lu3+ Co-Doping on the Morphology and Luminescent Properties of NaYF4:Sm3+ Phosphors. Materials 2023, 16, 2157. https://doi.org/10.3390/ma16062157

AMA Style

Nosov VG, Betina AA, Bulatova TS, Guseva PB, Kolesnikov IE, Orlov SN, Panov MS, Ryazantsev MN, Bogachev NA, Skripkin MY, et al. Effect of Gd3+, La3+, Lu3+ Co-Doping on the Morphology and Luminescent Properties of NaYF4:Sm3+ Phosphors. Materials. 2023; 16(6):2157. https://doi.org/10.3390/ma16062157

Chicago/Turabian Style

Nosov, Viktor G., Anna A. Betina, Tatyana S. Bulatova, Polina B. Guseva, Ilya E. Kolesnikov, Sergey N. Orlov, Maxim S. Panov, Mikhail N. Ryazantsev, Nikita A. Bogachev, Mikhail Yu Skripkin, and et al. 2023. "Effect of Gd3+, La3+, Lu3+ Co-Doping on the Morphology and Luminescent Properties of NaYF4:Sm3+ Phosphors" Materials 16, no. 6: 2157. https://doi.org/10.3390/ma16062157

APA Style

Nosov, V. G., Betina, A. A., Bulatova, T. S., Guseva, P. B., Kolesnikov, I. E., Orlov, S. N., Panov, M. S., Ryazantsev, M. N., Bogachev, N. A., Skripkin, M. Y., & Mereshchenko, A. S. (2023). Effect of Gd3+, La3+, Lu3+ Co-Doping on the Morphology and Luminescent Properties of NaYF4:Sm3+ Phosphors. Materials, 16(6), 2157. https://doi.org/10.3390/ma16062157

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