研究目的
To investigate the optimum properties of Au NP/SiO2 sphere plasmonic superstructures (PS) that display both SERS-activity and colloidal stability for reaction monitoring in heterogeneous catalysis applications.
研究成果
SERS-active, colloidally stable superstructures of (Au/SiO2)@SiO2 have been successfully prepared for reaction monitoring in heterogeneous catalysis applications. The study found that electrostatic interactions dominate the adsorption of Au NPs over intrinsic chemical affinity, and a balance was found between the radius of the Au NPs and the SiO2 spheres for optimal adsorption density and plasmon coupling. The structures open up the possibility of using SERS to investigate liquid-phase systems, and specifically reactions related to heterogeneous catalysis.
研究不足
The study was limited to the investigation of Au NP/SiO2 sphere plasmonic superstructures and their application in SHINERS for liquid phase heterogeneous catalysis. The colloidal stability and SERS-activity were optimized, but the practical application in real catalytic systems was not extensively explored.
1:Experimental Design and Method Selection:
The study involved the preparation of plasmonic superstructures based on Au/SiO2 for SHINERS in liquid phase applications. Functionalization of SiO2 spheres was performed with different molecules to study their effect on the adsorption of Au NPs.
2:Sample Selection and Data Sources:
SiO2 spheres were synthesized and functionalized with MPTMS, APTMS, and PEI. Au NPs of various sizes were adsorbed onto these functionalized SiO2 spheres.
3:List of Experimental Equipment and Materials:
Materials included HAuCl4·3 H2O, hydroxylamine hydrochloride, trisodium citrate dihydrate, and various silanes for functionalization. Equipment included TEM, UV/Vis spectrophotometer, DLS, and Raman spectrometers.
4:Experimental Procedures and Operational Workflow:
The synthesis involved functionalizing SiO2 spheres, adsorbing Au NPs onto them, and coating the resulting superstructures with SiO
5:Characterization was performed using TEM, UV/Vis, DLS, and Raman spectroscopy. Data Analysis Methods:
Data from TEM, UV/Vis, DLS, and Raman spectroscopy were analyzed to determine the adsorption density of Au NPs, plasmonic activity, and SERS-activity.
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FEI Tecnai 12
Tecnai 12
FEI
Transmission electron microscopy
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FEI Tecnai 20
Tecnai 20
FEI
Transmission electron microscopy
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Malvern Zetasizer
Zetasizer
Malvern
Dynamic light scattering and zeta potential measurements
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Cary 60 UV spectrophotometer
Cary 60
Agilent Technologies
UV/Vis spectroscopy
Cary 60 UV-Vis Spectrophotometer
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FEI XL30sFEG
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Scanning electron microscopy
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Renishaw InVia Raman microscope
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Renishaw
Raman micro-spectroscopy
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Horiba XPlora
XPlora
Horiba
Raman micro-spectroscopy
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