研究目的
To analyze phenyl modified Carbon Nitride structures obtained by thermal polymerization for their application in lighting, focusing on the relationship between structural and optical properties.
研究成果
The study successfully demonstrated the polymerization scheme of phenyl modified Carbon Nitride, achieving a 2D structure of phenyl modified g-C3N4 with optical properties shifted into the visible region and a quantum yield over 60%. A prototype white LED based on phenyl-g-C3N4 showed stable operation over 10000 hours, indicating its potential for lighting applications.
研究不足
The study focuses on the structural and optical properties of phenyl modified Carbon Nitride for lighting applications, but the scalability and cost-effectiveness of the synthesis method for industrial applications are not discussed.
1:Experimental Design and Method Selection:
Thermal polymerization of 2,4-diamino-6-phenyl-1,3,5-triazine at different temperatures (250 to 400 °C) under nitrogen flux.
2:Sample Selection and Data Sources:
Samples were manually grounded and washed with methanol to remove impurities.
3:List of Experimental Equipment and Materials:
Quartz tube, tubular furnace, Malver Panalytical Empyrean Diffractometer, BWTEK i-Raman ex spectrometer, PerkinElmer 24000 Series II CHN Analyzer, High-Resolution Mass Spectrometer, Netzch 209 F1 Libra for TGA, DSC1 METTLER STAR1 System, UV-Vis-NIR Agilent Technologies Cary 5000, Avantes Sensilne Avaspec-ULS-TEC Spectrometer, streak camera (Hamamatsu C10910), integrating sphere (Lab sphere, LMS-100).
4:0). Experimental Procedures and Operational Workflow:
4. Experimental Procedures and Operational Workflow: Samples were treated at different temperatures, characterized by XRD, Raman, TGA, DSC, UV-Vis, steady-state and time-resolved photoluminescence measurements.
5:Data Analysis Methods:
Gaussian fitting of PL spectra, Tauc plots for bandgap calculation, multiexponential decay function for time-resolved measurements.
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Malver Panalytical Empyrean Diffractometer
Empyrean
Malver Panalytical
X-Ray Diffraction measurements
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PerkinElmer 24000 Series II CHN Analyzer
24000 Series II
PerkinElmer
Elemental analysis
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High-Resolution Mass Spectrometer
micrOTF-Q II
Bruker
High Resolution Mass Spectra acquisition
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UV-Vis-NIR Agilent Technologies Cary 5000
Cary 5000
Agilent Technologies
Absorption measurements
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Avantes Sensilne Avaspec-ULS-TEC Spectrometer
Avaspec-ULS-TEC
Avantes
Steady-state photoluminescence measurements
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Hamamatsu C10910
C10910
Hamamatsu
Time resolved photoluminescence measurements
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Lab sphere, LMS-100
LMS-100
Lab sphere
Luminescence quantum yield measurement
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BWTEK i-Raman ex
i-Raman ex
BWTEK
Raman spectra acquisition
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Netzch 209 F1 Libra
209 F1 Libra
Netzch
Thermo-gravimetric analysis
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DSC1 METTLER STAR1 System
DSC1
METTLER
Differential Scanning Calorimetry measurements
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