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January 25, 2026Ceramics1 citationsOpen Access

Luminescence Features of Eu2O3-Doped Antimony Borate Glasses with High Quantum Efficiency

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HYHadjer YoucefMSMohamed Toufik SoltaniDLDominique de Ligny

Key Points

  • The study aims to investigate how varying B2O3 and Sb2O3 content affects the luminescence properties of Eu3+-doped glasses.
  • Preparation of boro-antimonite glasses using a melt quenching method
  • Doping with varying amounts of Eu2O3 and measuring the effects on luminescence
  • Analysis of spectroscopic and photoluminescence properties
  • Calculation of quantum efficiency and emission characteristics
  • Up to 26% change in properties with B2O3 addition up to 60 mol. %
  • 32% increase in the number of Eu3+ ions per unit volume
  • Strong emissions linked to Eu3+ transitions observed
  • High quantum efficiency (η) ranging from 74 to nearly 84%
  • Tunable chromaticity resulting in a warm orange-red color

Abstract

Boro-antimonite glasses doped with Eu3+ and having the general composition (90-x) Sb2O3–xB2O3–10Li2O-0.5Eu2O3 (x = 0 to 60 in 10 mol. % increment) were prepared using the melt quenching method. The influence of B2O3/Sb2O3 substitution on the spectroscopy and photoluminescence of Eu3+ ions was analyzed by studying the measured and calculated properties of these glasses. The relative value of a given property was shown to increase or decrease by up to 26% with the addition of up to 60 mol. % B2O3, while the number of Eu3+ ions per unit volume increased by approximately 32%. Strong emissions were obtained in association with the transitions of Eu3+ (5D0→7Fj, j = 1–4). A weak, broad emission centered at 450 nm was also detected. This emission is clearly linked to the glass composition. It originates from a potential presence of Eu2+ ions. This enhances 5D0 level emission via charge transfer. The radiative and experimental lifetimes of the 5D0 level increase linearly with B2O3 content. This results in high quantum efficiency (η) ranging from 74 to nearly 84%. Tunable chromaticity, as defined by the CIE 1931 standard, was achieved, resulting in a warm orange-red color with high brightness. These new glasses have a variety of potential laser-related applications.

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Cite This Study

Youcef et al. (2026) studied this question.

synapsesocial.com/papers/6975b36bfeba4585c2d6ed3dhttps://doi.org/10.3390/ceramics9020012
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