研究目的
Investigating the synthesis and luminescence properties of novel orange-red phosphors Sr9La2W4O24:Sm3+, Eu3+ for potential applications in near-UV white LEDs.
研究成果
The Sr9La2W4O24:Sm3+, Eu3+ phosphors exhibit tunable photoluminescence from orange to red light under near-UV excitation, making them suitable for applications in solid-state lighting. The optimal doping concentration of Sm3+ is 15 mol%, and the energy transfer mechanism is dominated by dipole-dipole interaction.
研究不足
The synthesis process leads to agglomerates which reduce the overall packing density and luminescence intensity. Future experiments aim to reduce agglomerate formation.
1:Experimental Design and Method Selection:
High-temperature solid-phase reaction method was used to synthesize the phosphors.
2:Sample Selection and Data Sources:
Raw materials included La2O3, Eu2O3, Sm2O3, SrCO3, and WO
3:List of Experimental Equipment and Materials:
X-ray diffractometer (XRD, Philips XD-2), emission scanning electronic microscope (FE-SEM), Fluorescence Spectrophotometer (Hitachi FL-7000), FLS980 luminescence spectrometer, PL quantum efficiency measurement system (QE-2100).
4:0). Experimental Procedures and Operational Workflow:
4. Experimental Procedures and Operational Workflow: Samples were ground, sintered at 1400°C for 6h, and characterized.
5:Data Analysis Methods:
XRD patterns, SEM images, excitation and emission spectra, fluorescence lifetime, and quantum efficiency were analyzed.
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Emission scanning electronic microscope
S3400N-Hitachi-Japan
Hitachi
Characterizing the morphology of sample
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Fluorescence Spectrophotometer
Hitachi FL-7000
Hitachi
Analyzing the excitation and emission spectra of SLWO:xSm3+ samples
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FLS980 luminescence spectrometer
FLS980
Edinburgh Instruments
Measuring the excitation and emission spectra of SLWO:0.15Sm3+, yEu3+ samples and fluorescence lifetime
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X-ray diffractometer
Philips XD-2
Philips
Determining the crystalline structure of the synthetic phosphor powders
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PL quantum efficiency measurement system
QE-2100
Otsuka Electronics Co., Ltd.
Analyzing the quantum efficiency
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