Origin of luminescence in Bi3+- doped lanthanide niobates

被引:14
作者
Baran, M. [1 ]
Belikov, K. N. [2 ]
Kissabekova, A. [3 ,4 ]
Krasnikov, A. [3 ]
Lushchik, A. [3 ]
Mihokova, E. [5 ]
Tsiumra, V [6 ,7 ]
Vasylechko, L. [8 ]
Zazubovich, S. [3 ]
Zhydachevskyy, Ya [6 ,8 ]
机构
[1] Inst Elect Mat Technol, Wolczynska 133, PL-01919 Warsaw, Poland
[2] Inst Single Crystals, 60 Nauka Ave, UA-61001 Kharkiv, Ukraine
[3] Univ Tartu, Inst Phys, W Ostwaldi 1, EE-50411 Tartu, Estonia
[4] LN Gumilyov Eurasian Natl Univ, Satpayev 2, Nur Sultan 010008, Kazakhstan
[5] Czech Acad Sci, Inst Phys, Cukrovarnicka 10, Prague 16200, Czech Republic
[6] Polish AS, Inst Phys, Al Lotnikow 32-46, PL-02668 Warsaw, Poland
[7] Ivan Franko Natl Univ Lviv, 107 Tarnayskoho Str, UA-79017 Lvov, Ukraine
[8] Lviv Polytech Natl Univ, Bandera 12, UA-79013 Lvov, Ukraine
关键词
Photoluminescence; Time-resolved spectroscopy; Exciton-like states; Lanthanide niobates; Bi3+; ENERGY-TRANSFER; NANOCRYSTALLINE PHOSPHORS; OPTICAL-PROPERTIES; YNBO4; ION; YTTRIUM; RE; PHOTOLUMINESCENCE; TEMPERATURE; TRANSITION;
D O I
10.1016/j.jallcom.2020.157800
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Photoluminescence characteristics of the undoped and Bi3+-doped lanthanide niobates are investigated by the steady-state and time-resolved spectroscopy methods in a wide temperature range of 4.2-500 K. The broad visible emission bands with the large Stokes shifts are found to arise from the triplet relaxed excited states characterized by a small (similar to 1 meV) spin-orbit splitting energy. This indicates the exciton-like origin of all the observed emission bands. The data allow to conclude that the Bi3+-related triplet relaxed excited state is located inside the conduction band. No ultraviolet emission caused by the radiative decay of the triplet relaxed excited state of a Bi3+ ion is observed. The dependences of the emission intensity on the Bi3+ content indicate that the complex visible emission band of the Bi3+-doped niobates consists of two main, the higher-energy and the lower-energy, components arising from the excitons localized around the single Bi3+ ions and the {Bi3+- Bi3+} dimers, respectively. The processes resulting in the appearance of the exciton-like emission under photoexcitation in the Bi3+-related absorption bands are discussed. (C) 2020 Elsevier B.V. All rights reserved.
引用
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页数:17
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