研究目的
To demonstrate a facile method to fabricate super-hydrophilic 3D porous graphene with high capillary force and ultra-fast spreading characteristic by direct laser writing on KMnO4-coated polyimide (PI) films.
研究成果
The study successfully demonstrated a facile method to fabricate super-hydrophilic 3D porous graphene with high capillary force and ultra-fast spreading characteristic. The material's properties are attributed to its porous structure and abundant oxygen functional groups, making it suitable for applications requiring liquid-solid interaction.
研究不足
The study focuses on the fabrication and characterization of super-hydrophilic porous graphene, but the scalability of the method and the long-term stability of the material's properties are not discussed.
1:Experimental Design and Method Selection:
Direct laser writing on KMnO4-coated polyimide (PI) films to fabricate super-hydrophilic 3D porous graphene.
2:Sample Selection and Data Sources:
Polyimide film coated with KMnO4 solution.
3:List of Experimental Equipment and Materials:
CO2 laser, polyimide film, KMnO4 solution, SEM, Raman spectrometer, XPS, contact angle measurement equipment, high-speed photography, IR camera.
4:Experimental Procedures and Operational Workflow:
Coating PI film with KMnO4 solution, laser irradiation, characterization of the produced graphene.
5:Data Analysis Methods:
Analysis of Raman spectra, XPS patterns, SEM images, contact angle measurements, and capillary rate-of-rise tests.
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SEM
Zeiss Merlin
Zeiss
Analyzing the morphology of LIG and OLIG surface
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XPS
Axis Uhru DCD
Axis
Quantitatively investigating the chemical composition of the sample surfaces
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Raman spectrometer
LabRAM Aramis
HORIBA Jobin Yvon
Analyzing the atomic structures of samples
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High speed photography
TS5-277
Fastec
Capturing the instant behavior of droplets
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IR camera
ThermaCAM SC3000 IR
FLIR
Recording the thermal distribution in the field
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Contact angle measurement equipment
JC2000D1
Powereach
Measuring static contact angles
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Polyimide film
Shenzhen XinYushun Packaging Products Co., Ltd
Substrate for laser writing
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CO2 laser
Direct laser writing on polyimide film
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