Preparation method of polyethyleneimine-modified graphene aerogel
A technology of graphene airgel and polyethyleneimine, which is applied in the direction of airgel preparation, graphene, chemical instruments and methods, etc., can solve the problem of affecting the service life of extraction fibers, difficult modification of metal surface, and mechanical properties of quartz To achieve the effect of enhancing mechanical strength and extraction performance, shortening sample analysis time, and improving mechanical strength
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Embodiment 1
[0016] The polyethyleneimine aqueous solution was added dropwise to the graphene oxide aqueous dispersion, and the polyethyleneimine-graphene oxide dispersion was obtained after stirring evenly. The concentration of polyethyleneimine in the dispersion was 0.1 mg / mL, and the oxidation The concentration of graphene in the dispersion is 1 mg / mL, add ascorbic acid to make the concentration 5 mg / mL, put the mixed solution in an autoclave, react at a constant temperature of 100 °C for 12 h, and freeze-dry the obtained solid Polyethyleneimine modified graphene airgel was prepared. It was ground and pulverized, and glued to the surface of stainless steel wire to prepare polyethylenimine modified graphene airgel-coated stainless steel wire solid-phase microextraction fiber, which was used in conjunction with gas chromatography to apply to polycyclic compounds in environmental water samples. Analysis and detection of aromatic hydrocarbon pollutants.
Embodiment 2
[0018] The polyethyleneimine aqueous solution was added dropwise to the graphene oxide aqueous dispersion, and after stirring evenly, a polyethyleneimine-graphene oxide dispersion was obtained. The concentration of polyethyleneimine in the dispersion was 0.5 mg / mL, and the oxidation The concentration of graphene in the dispersion is 5 mg / mL, add ascorbic acid to make the concentration 18 mg / mL, put the mixed solution in a high-pressure reactor, react at a constant temperature of 150 °C for 6 h, and freeze-dry the obtained solid Polyethyleneimine modified graphene airgel was prepared. It was ground and pulverized, and glued to the surface of titanium wire to prepare polyethylenimine modified graphene airgel-coated titanium wire solid-phase microextraction fiber, which was used in conjunction with gas chromatography to apply to polycyclic compounds in environmental water samples. Analysis and detection of aromatic hydrocarbon pollutants.
Embodiment 3
[0020] The polyethyleneimine aqueous solution was added dropwise to the graphene oxide aqueous dispersion, and after stirring evenly, a polyethyleneimine-graphene oxide dispersion was obtained. The concentration of polyethyleneimine in the dispersion was 0.3 mg / mL. The concentration of graphene in the dispersion is 3 mg / mL, add ascorbic acid to make the concentration 10 mg / mL, put the mixed solution in a high-pressure reactor, react at a constant temperature of 120 °C for 9 h, and freeze-dry the obtained solid Polyethyleneimine modified graphene airgel was prepared. It was ground and pulverized, and glued to the surface of nickel wire to prepare polyethylenimine modified graphene airgel-coated nickel wire solid-phase microextraction fiber, which was used in conjunction with gas chromatography to apply to polycyclic rings in environmental water samples. Analysis and detection of aromatic hydrocarbon pollutants.
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