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Novel insights on energy transfer processes in [Ce4+/Ce3+]-Er3+-doped tellurite glass.

Authors :
Pinto, I.C.
Falci, R.F.
Rivera, V.A.G.
Guérineau, T.
LaRochelle, S.
Messaddeq, Y.
Source :
Ceramics International. Feb2023, Vol. 49 Issue 4, p6613-6619. 7p.
Publication Year :
2023

Abstract

Previous works have been already reported on multiphonon-assisted non-resonant energy transfer in Ce3+-Er3+-doped tellurite glasses. However, it is not clear the mechanism of the radiative emission of Er3+ centered at 1530 nm. In this paper, we reported a better understanding of the mechanism of interactions between those two rare-earth ions via a systematic study. For that, we will explore the energy transitions between Ce4+/Ce3+ and Er3+ ions in a tungsten-tellurite glass to both emission (in the near infrared) and upconversion (in the visible) spectrum. Here, Ce4+ and Ce3+ were obtained in an Er3+-doped tellurite glasses via the addition of different concentrations of CeO 2 as part of the composition of the samples. Emission spectrum, under a 980 nm excitation, giving rise to a series of interactions between Ce3+↔Er3+ resulting in: (i) a subtle increase of the Er3+ emission intensity in the near-infrared region for 0.1 mol% of CeO 2 , and then a decrease in the emission for higher CeO 2 concentration in both cases without any significant increase in the bandwidth, and (ii) a decrease of the visible upconversion emission intensity with the addition of CeO 2. Such interactions are achieved via a coupling yielding and energy transfer from both rare-earth ions. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
02728842
Volume :
49
Issue :
4
Database :
Academic Search Index
Journal :
Ceramics International
Publication Type :
Academic Journal
Accession number :
161280907
Full Text :
https://doi.org/10.1016/j.ceramint.2022.10.156