研究目的
To introduce a one-step growth process for producing uniform ultrathin reduced graphene oxide (rGO) films on various substrates and free-standing rGO powders using cellulose acetate as a precursor, without any catalysts, and to demonstrate their applications in electronic and optoelectronic devices.
研究成果
The one-step growth of CA-rGO from cellulose acetate on arbitrary substrates is simpler than traditional processes for preparing rGO. The method allows for the mediation of the size of the CA-rGO nanoplatelets and their extent of graphitization by controlling the reaction temperature and the percentage of H2 in the reductive gas mixture. The graphene-like in-plane crystalline structure of the CA-rGO thin film, along with its abundant chemically active sites and large surface area, enabled the fabrication of high-performance photodetectors and humidity sensors.
研究不足
The study mentions the difficulty in controlling the size, roughness, and thickness of the end rGO product due to the strong oxidizers and various reducing agents involved in traditional processes. The one-step method may still require optimization for specific applications.
1:Experimental Design and Method Selection:
The study utilizes a one-step growth process where cellulose acetate is used as a precursor to produce rGO films and powders through thermal annealing under a continuous flow of H2/Ar.
2:Sample Selection and Data Sources:
Target substrates (quartz, SiO2/Si, Cu, Si, glass) were spin-coated with a cellulose acetate solution in acetone.
3:List of Experimental Equipment and Materials:
A self-assembled Chemical Vapor Deposition (CVD) system, Renishaw inVia confocal Raman microscope, Agilent 5400 SPM, Varian Cary 5000, NETZSCH STA 449 F3 Jupiter, Nicolet IS10 FT-IR spectrometer, Kratos Supra spectrometer, Titan 80-300 HRTEM.
4:Experimental Procedures and Operational Workflow:
The spin-coated device was loaded into a quartz tube inside a CVD system, pumped down to high vacuum, and then H2 and Ar were introduced. The furnace temperature was increased to 1040 °C (600 °C for glass substrates) over 30 min and kept for 1 hr.
5:Data Analysis Methods:
Raman spectroscopy, AFM, UV-vis-NIR spectroscopy, TGA, IR, XPS, HRTEM were used for characterization.
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Agilent 5400 SPM
5400 SPM
Agilent
Atomic force microscopy images collection
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Nicolet IS10 FT-IR spectrometer
IS10
Thermo Fisher Scientific
Infrared spectroscopy recording
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Kratos Supra spectrometer
Supra
Kratos
XPS data collection
-
Titan 80-300
80-300
FEI
High-resolution transmission electron microscopy
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Renishaw inVia confocal Raman microscope
inVia
Renishaw
Raman spectra and mapping of rGO
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Varian Cary 5000
Cary 5000
Varian
Absorption spectra collection
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NETZSCH STA 449 F3 Jupiter
STA 449 F3 Jupiter
NETZSCH
Thermogravimetric analysis
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