Preparation method for heteropoly acid functional composite material adopting dopamine modified carbon nano tube as carrier
A technology of carbon nanotubes and composite materials, applied in the fields of nanotechnology, nanotechnology, nanotechnology for materials and surface science, etc. Effect
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Embodiment 1
[0026] A preparation method of a heteropolyacid functional composite material using dopamine-modified carbon nanotubes as a carrier, the steps are as follows:
[0027] (1) preparation concentration is 100ml of Tris (trishydroxymethylaminomethane) solution of 1mmol / L, the hydrochloric acid adjustment solution pH value that adds 0.1mol / L is 10, the alkaline solution of dopamine; Mix 10mg dopamine and 10mg carbon nanometer The tube (10nm in diameter and 15-30um in length) was placed in the prepared alkaline solution of dopamine. After ultrasonic dispersion for 1 hour, it was stirred at room temperature for 24 hours, then vacuum filtered, washed 3 times with absolute ethanol, and then Washed 3 times with deionized water until the filtrate was colorless and dried to obtain polydopamine-modified carbon nanotubes (DOPA-CNTs);
[0028] (2) Add 10 mg of dry DOPA-CNTs obtained in step (1) to 100 ml of 1 mmol / L phosphomolybdic acid (H 3 PMo 12 o 40 28H 2 O, Phosphomolybdic acid, PMA)...
Embodiment 2
[0031] A preparation method of a heteropolyacid functional composite material using dopamine-modified carbon nanotubes as a carrier, the steps are as follows:
[0032] (1) Preparation concentration is 100ml of Tris (trishydroxymethylaminomethane) solution of 10mmol / L, the hydrochloric acid adjustment solution pH value that adds 0.1mol / L is 9, the alkaline solution of dopamine; Mix 50mg dopamine and 50mg carbon nanometer The tube (10nm in diameter and 15-30um in length) was placed in the prepared alkaline solution of dopamine. After ultrasonic dispersion for 1 hour, it was stirred at room temperature for 12 hours, then vacuum filtered, washed 3 times with absolute ethanol, and then Washed 3 times with deionized water until the filtrate was colorless and dried to obtain polydopamine-modified carbon nanotubes (DOPA-CNTs);
[0033] (2) Add 50 mg of dry DOPA-CNTs obtained in step (1) to 100 ml of 10 mmol / L phosphomolybdic acid (H 3 PMo 12 o 40 28H 2 O, Phosphomolybdic acid, PMA...
Embodiment 3
[0036] A preparation method of a heteropolyacid functional composite material using dopamine-modified carbon nanotubes as a carrier, the steps are as follows:
[0037] (1) preparation concentration is 100ml of Tris (trishydroxymethylaminomethane) solution of 20mmol / L, the hydrochloric acid adjustment solution pH value that adds 0.1mol / L is 8, the alkaline solution of dopamine; Mix 100mg dopamine and 50mg carbon nanometer The tube (10nm in diameter and 15-30um in length) was placed in the prepared alkaline solution of dopamine. After ultrasonic dispersion for 1 hour, it was stirred at room temperature for 6 hours, then vacuum filtered, washed 3 times with absolute ethanol, and then Washed 3 times with deionized water until the filtrate was colorless and dried to obtain polydopamine-modified carbon nanotubes (DOPA-CNTs);
[0038] (2) Add 100 mg of dry DOPA-CNTs obtained in step (1) to 100 ml of 20 mmol / L phosphomolybdic acid (H 3 PMo 12 o 40 28H 2 O, Phosphomolybdic acid, PM...
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