研究目的
Investigating the construction of a highly efficient Z-scheme photocatalytic system for environmental remediation and renewable energy production.
研究成果
The prepared Z-scheme CeO2/CeVO4/V2O5 (550-3) photocatalyst exhibits high photocatalytic activity in degradation of organic pollutants with simultaneous hydrogen evolution, attributed to the effective conductive channel provided by CeVO4 nanoparticles. The study provides a novel method for designing efficient Z-scheme photocatalysts.
研究不足
The study focuses on the photocatalytic degradation of Methylene Blue and hydrogen evolution under visible light irradiation, with potential limitations in scalability and practical application under varying environmental conditions.
1:Experimental Design and Method Selection:
The study employs a solid phase reaction method to prepare a novel Z-scheme CeO2/CeVO4/V2O5 photocatalyst.
2:Sample Selection and Data Sources:
CeO2 and V2O5 powders are used as starting materials, with CeVO4 nanoparticles generated between them.
3:List of Experimental Equipment and Materials:
Includes XRD, SEM, TEM, EDX, XPS, DRS, PL, TPR, and EIS for characterization, and a photochemical reaction instrument for photocatalytic activity evaluation.
4:Experimental Procedures and Operational Workflow:
The photocatalytic activities are evaluated through degradation of Methylene Blue and hydrogen evolution under visible light irradiation.
5:Data Analysis Methods:
The degradation ratios of MB are calculated, and the photocatalytic hydrogen production performance is evaluated.
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Spectrofluorimeter
F4500
Hitachi Corporation
Measure photoluminescence spectra.
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Gas chromatograph
GC-8A
Shimadazu
Analyze the evolution hydrogen.
GC-8A Series Gas Chromatograph
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Scanning electron microscope
JEOL JSM-5610LV
Hitachi Corporation
Observe the surface morphology and micromorphology of prepared samples.
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Transmission electron microscopy
JEOL JEM2100
Hitachi Corporation
Observe the detailed structure of the as-obtained samples.
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Energy dispersive X-ray spectroscopy
JEOL JSM-5610LV
Hitachi Corporation
Determine the elemental compositions of prepared samples.
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X-ray photoelectron spectroscopy
XSAM800
Shimadzu-Kratos
Identify the functional groups of prepared samples.
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UV-vis diffuse reflectance spectroscopy
UV-3600
SHIMADZU
Measure the optical absorption properties of prepared samples.
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X-ray powder diffraction
D-8
Bruker-axs
Analyze the crystal structure of prepared samples.
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Photochemical reaction instrument
TL-GHX-V
Xujiang Electrome Chanical Plant
Conduct experiment operations.
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UV-vis spectrometer
Cary 50
Varian Company
Determine the degradation percent of MB in aqueous solution.
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