Luminescence behaviour of Eu3+ in hot-compressed silicate glasses

被引:8
|
作者
Cherbib M.A. [1 ]
Kapoor S. [2 ]
Bockowski M. [3 ]
Smedskjaer M.M. [2 ]
Wondraczek L. [1 ]
机构
[1] Otto Schott Institute of Materials Research, University of Jena, Fraunhoferstrasse 6, Jena
[2] Department of Chemistry and Bioscience, Aalborg University, Aalborg
[3] Institute of High-Pressure Physics, Polish Academy of Sciences, Warsaw
来源
基金
欧盟地平线“2020”; 欧洲研究理事会;
关键词
Hot-compressed glasses; Luminescence; Silicate glasses; Trivalent europium;
D O I
10.1016/j.nocx.2019.100041
中图分类号
学科分类号
摘要
This paper aims to explore density-driven effects on the luminescence of Eu3+ doped silicate glasses. For this, mildly densified samples were fabricated by quasi-isostatic hot compression at up to 2 GPa from melt-quenched precursor materials. As a result of compression, both density and glass transition temperature of the blank (Eu free) and doped compositions increase. Raman spectroscopy indicates a slight increase in the intensity of vibrational modes assigned to small silicate rings and Si-O-Si bridges. Photoluminescence experiments reveal the creation of new paths of de-excitation, reducing the relative intensity of the transitions in the excitation spectra and the lifetime of the 5D0 → 7F2 emission line. Meanwhile, the luminescence intensity remains unchanged due to enhanced oscillator strength and refractive index at uniform electron-phonon coupling strength. Luminescence spectra also show a slight expansion of some of the energy levels of Eu3+, together with an increase of the bandwidth of the 5D0 → 7F2 emission line due to the crystal-field influence and growing electron population of the lower Stark sub-levels. Finally, increasing symmetry of Eu3+ sites was detected with increasing degree of compaction, resulting in a reduction of the intensity of the forced electric dipole transition of 5D0 → 7F2 relative to the magnetic dipole transition of 5D0 → 7F1. © 2019 The Authors
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