研究目的
Investigating the therapeutic effects of a specific herbal medicine on a particular disease.
研究成果
The study highlights the importance of Zn0.5Cd0.5S/Ni2P heterostructures based on non-noble metal co-catalyst for efficient visible-light-driven H2 production from water splitting. The heterostructure, Zn0.5Cd0.5S/1wt%Ni2P (S2), showed excellent water splitting activity with very high H2 generation rate and AQY, attributed to efficient spatial separation of photo-generated charge carriers and the presence of highly reactive Ni2P sites.
研究不足
The technical and application constraints of the experiments, as well as potential areas for optimization, are not explicitly mentioned in the paper.
1:Experimental Design and Method Selection:
The synthesis of Zn0.5Cd0.5S/Ni2P heterojunction photocatalysts with varying amount of Ni2P was carried out for efficient visible-light-assisted H2 generation by water splitting. The heterostructures were characterized by PXRD, FE-SEM, EDS, HR-TEM and XPS studies.
2:5Cd5S/Ni2P heterojunction photocatalysts with varying amount of Ni2P was carried out for efficient visible-light-assisted H2 generation by water splitting. The heterostructures were characterized by PXRD, FE-SEM, EDS, HR-TEM and XPS studies. Sample Selection and Data Sources:
2. Sample Selection and Data Sources: Zn0.5Cd0.5S nanostructures were synthesized using Cd(CH3COO)2.2H2O, Zn(CH3COO)2.2H2O, and thiourea. Ni2P nanostructures were synthesized using NiCl2.6H2O, PVP, CH3COONa.2H2O, and red phosphorus.
3:5Cd5S nanostructures were synthesized using Cd(CH3COO)2H2O, Zn(CH3COO)2H2O, and thiourea. Ni2P nanostructures were synthesized using NiCl6H2O, PVP, CH3COONa.2H2O, and red phosphorus. List of Experimental Equipment and Materials:
3. List of Experimental Equipment and Materials: PANalytical's XPERT PRO Diffractometer, UV-2600 Shimadzu corporation spectrophotometer, Perkin Elmer LS55 fluorescence spectrophotometer, Carl Zeiss Supra [55] FE-SEM, Tecnai G2 F30 HR-TEM, PerkinElmer, Clarus 580 gas chromatography, Quantachrom Quadrasorb-SI surface area analyzer, Omicron X-ray Photoelectron Spectrometer, Metrohom Autolab scanning potentiostat.
4:Experimental Procedures and Operational Workflow:
The photocatalytic water splitting experiments were carried out at room temperature under an inert atmosphere in a 105 mL quartz vessel using three white LED lamps as visible light sources.
5:Data Analysis Methods:
The apparent quantum yield (AQY) was calculated using the formula (AQY)% = 2R/I * 100. The turnover number (TON) and turnover frequency (TOF) were calculated by using the formula TON = Number of moles of H2 evolved at the end of 4h / Number of moles of Ni2P used, TOF = TON / Time(h).
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PerkinElmer, Clarus 580 gas chromatography
Clarus 580
PerkinElmer
Photocatalytic H2 generation measurements
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Metrohom Autolab scanning potentiostat
Autolab
Metrohom
Performing electrochemical impedance and photocurrent studies in a three-electrode photoelectrochemical (PEC) cell
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PANalytical's XPERT PRO Diffractometer
XPERT PRO
PANalytical
Recording powder X-ray diffraction (XRD) patterns of the synthesized samples
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UV-2600 Shimadzu corporation spectrophotometer
UV-2600
Shimadzu
Measuring UV-Visible absorption spectra
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Perkin Elmer LS55 fluorescence spectrophotometer
LS55
Perkin Elmer
Recording photoluminescence spectra at room temperature
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Carl Zeiss Supra [55] FE-SEM
Supra [55]
Carl Zeiss
Field-emission scanning electron microscopy (FE-SEM) images along with energy dispersive spectroscopy (EDS) analysis
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Tecnai G2 F30 HR-TEM
G2 F30
Tecnai
High-resolution transmission electron microscopy (HR-TEM) and selected area electron diffraction (SAED) measurements
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Quantachrom Quadrasorb-SI surface area analyzer
Quadrasorb-SI
Quantachrom
Nitrogen adsorption studies at 77 K
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Omicron X-ray Photoelectron Spectrometer
Omicron
XPS measurements
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