Title of article :
Synthesis, Characterization and Application of Graphene Oxide, Graphene Oxide Quantum Dots and Graphene Guantum Dots in Photoelectrochemical Sensors
Author/Authors :
ahmadi, nasrin islamic azad university, science and research branch - department of materials engineering, Tehran, Iran , nemati, ali sharif university of technology - department of materials science engineering, Tehran, Iran , bagherzadeh, mojtaba nuclear science and technology research institute - reactor and nuclear safety school, Isfahan, Iran
From page :
64
To page :
73
Abstract :
In this study, graphene oxide (GO), graphene oxide quantum dots (GOQD) and graphene quantum dots (GQD) were synthesized by Hummers, hydrothermal and the calcination in argon methods, respectively. Then structure of the samples were characterized by X-ray diffraction, Fourier- transform infrared and Raman spectroscopies and their particle size distribution were investigated by dynamic light scattering. Afterward electrical and photoelectric properties of the samples were studied by electrical conductivity meter and diffuse reflectance and photoluminescence spectroscopies. Finally, the photoelectrochemical sensors were designed to detect dopamine (DA) based on GO, GOQD and GQD modified glassy carbon electrodes (GCE). The results showed that the sample of GO has graphene plates with widest particle size distribution (about 1.3 to 5.7 μm) and the highest electrical conductivity (287.9 μS/cm). On the other, the sample of GQD has narrowest particle size distribution (about 5.3 to 12.8 nm) and the lowest electrical conductivity (165.1 μS/cm). The samples of GOQD and GQD have light absorption throughout range of visible wavelength and therefore have photoelectric behavior better than GO. As a result, in DA detection sensors, the photo response of the GCEs modified with GOQD and GQD is 4 times higher than that of GO modified GCE.
Keywords :
Graphene , Graphene quantum dots , Photoelectric property , Photoelectrochemical sensor , Dopamine
Journal title :
Journal of Advanced Materials and Processing
Journal title :
Journal of Advanced Materials and Processing
Record number :
2645815
Link To Document :
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