研究目的
Investigating the characterization and performance of lead bromide perovskite luminescent solar concentrators for solar energy applications.
研究成果
The study demonstrates the successful synthesis and application of CH3NH3PbBr3 perovskite fluorophores in LSCs, showing optimized efficiency enhancement in the 0.04%wt sample. The findings suggest reliable performance for solar energy applications despite challenges like re-absorption and UV stability.
研究不足
Re-absorption in the samples leading to spectral distortion and efficiency reduction under high intensity UV illumination.
1:Experimental Design and Method Selection:
Synthesis of CH3NH3PbBr3 fluorophores by sonication method, embedding in PMMA host, and fabrication of LSC devices.
2:Sample Selection and Data Sources:
Use of synthesized perovskite fluorophores in PMMA matrix with varying concentrations.
3:List of Experimental Equipment and Materials:
Ultrasonic transducer, Shimadzu UV-2450 spectrophotometer, Jasco FP-6200 spectrofluorometer, Siemens XRD-D5000 diffractometer, Tescan MIRA3 Scanning Electron Microscope, Ocean Optics USB4000 spectrometer.
4:Experimental Procedures and Operational Workflow:
Polymerization of solutions in casting molds, cutting into cuboid shapes, and characterization under AM
5:5 illumination. Data Analysis Methods:
Monte-Carlo ray tracing algorithm for simulating LSC response, analysis of optical efficiency and output power.
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Shimadzu UV-2450 spectrophotometer
UV-2450
Shimadzu
Acquiring optical properties of synthesized materials and LSC
UV-1280 UV-Vis Spectrophotometer
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Jasco FP-6200 spectrofluorometer
FP-6200
Jasco
Acquiring optical properties of synthesized materials and LSC
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Siemens XRD-D5000 diffractometer
XRD-D5000
Siemens
Attaining X-Ray Diffraction spectrum
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Ocean Optics USB4000 spectrometer
USB4000
Ocean Optics
Obtaining output spectrum from the edge of LSCs
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Ultrasonic transducer
Qsonica-Q700 20 kHz
Qsonica
Synthesis of CH3NH3PbBr3 perovskite fluorophores
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Tescan MIRA3 Scanning Electron Microscope
MIRA3
Tescan
Reporting the morphology of the materials
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Universal Laser Systems laser cutter
Universal Laser Systems
Cutting samples to 50 × 30 × 5 mm
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