研究目的
To investigate and compare the physical and luminescent properties of Sm3+-doped oxide and oxy-fluoride phosphate glasses for solid state lighting applications.
研究成果
The oxy-fluoride glass exhibits better luminescence properties due to lower phonon energy and reduced OH groups, making it a superior candidate for orange-red light emitting applications in solid state lighting. The Judd-Ofelt analysis confirms the potential for lasing action, and the CIE coordinates indicate cool orange light emission.
研究不足
The study is limited to specific glass compositions and may not generalize to other systems. The melt quenching technique might introduce variations, and the analysis relies on theoretical models that have inherent assumptions. Future work is needed to understand structural changes and their influence on luminescence.
1:Experimental Design and Method Selection:
The study used a comparative approach to analyze oxide and oxy-fluoride glasses prepared by conventional melt quenching technique. Theoretical models included Judd-Ofelt theory for analyzing optical properties.
2:Sample Selection and Data Sources:
Glass samples with specific chemical compositions (69P2O5-10BaO-10ZnO-10Gd2O3-1Sm2O3 for oxide and 69P2O5-10BaO-10ZnO-10GdF3-1Sm2O3 for oxy-fluoride) were prepared using high-purity chemicals (
3:99%). List of Experimental Equipment and Materials:
Equipment included an electric furnace, alumina crucibles, brass mold, digital balance (HR-200, Diethelm limited), Abbe refractometer, Shimadzu UV-3600 spectrophotometer, fluorescence spectrophotometer (Agilent Technologies, Cary Eclipse), FTIR spectrometer (Cary 630 FTIR Agilent technologies). Materials included BaCO3, ZnO, Gd2O3, GdF3, NH4H2PO4, Sm2O3, water, sodium-vapor lamp, 1-bromo-naphthalene.
4:Experimental Procedures and Operational Workflow:
Chemicals were mixed, melted at 1500°C for 3 hours, quenched on a brass mold, annealed at 300°C for 3 hours, cut and polished. Density measured using Archimedes principle, refractive index with Abbe refractometer, absorption spectra with UV-Vis-NIR spectrophotometer, excitation and emission spectra with fluorescence spectrophotometer, decay time measurements, FTIR spectra, CIE diagram analysis.
5:Data Analysis Methods:
Data analyzed using Judd-Ofelt theory for oscillator strengths and radiative properties, least square fitting for J-O parameters, CIE coordinates calculation, and Inokuti-Hirayama model for decay curve analysis.
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Spectrophotometer
UV-3600
Shimadzu
Recording UV-VIS-NIR absorption spectra
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Fluorescence Spectrophotometer
Cary Eclipse
Agilent Technologies
Recording excitation and emission spectra, decay time measurements
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FTIR Spectrometer
Cary 630 FTIR
Agilent Technologies
Structural analysis using FTIR spectra
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Digital Balance
HR-200
Diethelm
Measuring weights of glass samples for density calculation
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Abbe Refractometer
Measuring refractive index of glass samples
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