JOURNAL ARTICLE

Luminescence properties of solid solutions of borates doped with rare-earth ions

V.S. LevushkinaV. V. MikhaĭlinD. SpasskyB.I. ZadneprovskiM. S. Tretyakova

Year: 2014 Journal:   Physics of the Solid State Vol: 56 (11)Pages: 2247-2258   Publisher: Pleiades Publishing

Abstract

The structural and luminescence properties of Lu x Y1 − x BO3 solid solutions doped with Ce3+ or Eu+3 have been investigated. It has been found that the solid solutions crystallize in the vaterite phase with a lutetium concentration x < 0.5. For a higher lutetium concentration x, the solid solutions contain an additional calcite phase with a content less than 5 wt %. The luminescence spectra are characterized by intensive impurity emission under excitation with the synchrotron radiation in the X-ray and ultraviolet spectral ranges. It has been shown that, as the lutetium concentration x in the Lu x Y1 − x BO3: Ce3+ solid solutions increases, the emission intensity smoothly decreases, which is associated with a gradual shift of the Ce3+ 5d(1) level toward the bottom of the conduction band, as well as with a decrease in the band gap. It has been established that, in the Lu x Y1 − x BO3: Eu3+ solid solutions with intermediate concentrations x, the efficiency of energy transfer to luminescence centers increases. This effect is explained by the limited spatial separation of electrons and holes in the solid solutions. It has been demonstrated that the calcite phase adversely affects the luminescence properties of the solid solutions.

Keywords:
Lutetium Luminescence Materials science Solid solution Vaterite Analytical Chemistry (journal) Impurity Doping Phase (matter) Ion Chemistry Yttrium Optoelectronics Carbonate Metallurgy

Metrics

11
Cited By
0.55
FWCI (Field Weighted Citation Impact)
29
Refs
0.63
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Luminescence Properties of Advanced Materials
Physical Sciences →  Materials Science →  Materials Chemistry
Radiation Detection and Scintillator Technologies
Physical Sciences →  Physics and Astronomy →  Radiation
Crystal Structures and Properties
Physical Sciences →  Materials Science →  Electronic, Optical and Magnetic Materials

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