研究目的
The objectives of this paper are to extract silicate from the agricultural waste and to incorporate it into a glass matrix. This research also aimed to study the J-O intensity parameters and radiative lifetimes of Er3+ doped in bio-silicate borotellurite glass so as to gain more information about the chemistry and physical properties of Er3+ ions within the glass matrix in order to analyze whether this glass system is suitable in optical glasses for photonics and lasers.
研究成果
The Er3+ doped bio-silicate borotellurite glass system exhibits promising properties for photonics and laser applications, including high density, increased molar volume with Er3+ concentration, and strong covalency and lower symmetry around Er3+ ions. The glass system shows potential for optical amplifiers and lasers due to its high stimulated emission cross section and long radiative lifetime.
研究不足
The study is limited to the analysis of Er3+ doped bio-silicate borotellurite glass system and its potential applications in photonics and lasers. The research does not explore other dopants or glass systems.
1:Experimental Design and Method Selection:
The glass series was fabricated using the melt quenching technique. Bio-silicate was extracted from rice husk and incorporated into the glass matrix.
2:Sample Selection and Data Sources:
A 13g of bio-silicate borotellurite doped with erbium glass system with composition of {[(TeO2)
3:8 (B2O3)2]8 (SiO2)2}1-y (Er2O3)y was used. List of Experimental Equipment and Materials:
X-ray fluorescence (XRF), X-ray diffraction (XRD), UV-Vis NIR spectrophotometer, PerkinElmer LS 55 Luminescence spectrophotometer, Philips X’ pert diffractometer model 7602 EA Almelo, SHIMADZU EDX-70 energy dispersive x-ray spectrometer.
4:Experimental Procedures and Operational Workflow:
The mixture was pre-heated, heated at 11000C, poured into mould, annealed, and cooled to room temperature. The glass sample was cut, ground, and polished for characterization.
5:Data Analysis Methods:
The absorption spectra, luminescence spectra, X-ray diffraction, and X-ray fluorescence were analyzed to determine the physical and optical properties of the glass.
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