研究目的
Investigating the magnetic and optical properties of graphene oxide quantum dots (GOQDs) prepared by the top-down technique from graphene oxide and obtained using the Hummers’ method.
研究成果
The study demonstrated that GOQDs exhibit paramagnetic behavior and broad range optical photoluminescence. EPR was crucial for distinguishing between signals from carbon defects and metal contaminations. The findings contribute to the understanding of magnetic properties in carbon nanostructures, potentially aiding in the design of multimodal imaging agents.
研究不足
The study acknowledges the presence of metal contaminations in the samples, which could affect the magnetic properties. The EPR technique was necessary to distinguish between signals from defects and metal contaminations.
1:Experimental Design and Method Selection:
The study involved the preparation of GOQDs using a top-down technique from graphene oxide obtained via the Hummers’ method. The process included ultra-sonication, boiling in HNO3, ultra-centrifugation, and filtration to achieve quantum dot properties.
2:Sample Selection and Data Sources:
GO water dispersion was purchased from NanoPoz Company. Flake size distributions were obtained from SEM images.
3:List of Experimental Equipment and Materials:
Equipment included a Branson Digital Sonifier SFX 550, Thermo Scientific? Sorvall LYNX 4000 Superspeed Centrifuge, Lambda 950 UV/Vis/NIR spectrometer, Gilden Photonics FluoroSENS 9000 spectrometer, Quantum Design Physical Property Measurement System, SEM Jeol 7001TTLS microscope, and Bruker ELEXSYS E
4:Experimental Procedures and Operational Workflow:
5 The GO suspension was ultra-sonicated, boiled in HNO3, ultra-centrifuged, and filtrated. Optical and magnetic measurements were then performed on the obtained GOQDs.
5:Data Analysis Methods:
Data analysis included fitting magnetization data with the Brillouin function and analyzing EPR spectra to separate contributions from defects and metal contaminations.
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Bruker ELEXSYS E500
ELEXSYS E500
Bruker
Recording EPR spectra
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Thermo Scientific? Sorvall LYNX 4000 Superspeed Centrifuge
LYNX 4000
Thermo Scientific
Ultra-centrifugation of GO suspension
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Lambda 950 UV/Vis/NIR spectrometer
Lambda 950
ParkinElmer
Recording absorption spectrum in the UV–Vis range
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SEM Jeol 7001TTLS microscope
7001TTLS
Jeol
Obtaining SEM images and EDX measurements
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Branson Digital Sonifier SFX 550
SFX 550
Branson
Ultra-sonication of GO suspension
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Gilden Photonics FluoroSENS 9000 spectrometer
FluoroSENS 9000
Gilden Photonics
Recording fluorescence spectra
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Quantum Design Physical Property Measurement System
Quantum Design
Measuring magnetic hysteresis loops and magnetization versus temperature
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