Preparation method of oriented carbon nanotube film
A technology of oriented carbon nanotubes and carbon nanotubes, which is applied in the field of orientation and film formation of polymer modified carbon nanotubes, can solve the problems of poor electromagnetic and mechanical properties, harshness, and poor self-supporting properties of carbon nanotube films, and achieve The effects of excellent compatibility, good magnetic properties and good electrical conductivity
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Embodiment 1
[0033] step 1
[0034] Add 3g of carboxylated carbon nanotubes with a diameter of 50-80nm, 5ml of anhydrous acetic acid, 95ml of anhydrous ethanol, and 2ml of silane coupling agent KH550 into a round bottom flask, mix well, seal and ultrasonically disperse for 30 minutes, and react at 50°C for 24 Hour. The product was washed with absolute ethanol, centrifuged three times, 20 minutes each time, and the rotating speed was 4000r / min. Vacuum filtration is performed after centrifugation, and the pore size of the microporous membrane is 220 nm. The suction-filtered product was dried in a vacuum oven at 40°C to obtain dry CNT-NH 2 .
[0035] step 2
[0036] Add 1.5 g of CNT-NH to the round bottom flask 2 , 50ml of tetrahydrofuran (THF) and 5ml of triethylamine, ultrasonically dispersed for 40min, put the flask in an ice bath, add 2ml of α-bromoisobutyryl bromide, 10ml of THF into the constant pressure dropping funnel, and drop them into the flask. After dropping, the reaction w...
Embodiment 2
[0050] step 1
[0051] Add 3g of carboxylated carbon nanotubes with a diameter of 50-80nm, 5ml of anhydrous acetic acid, 95ml of anhydrous ethanol, and 3ml of silane coupling agent KH550 into a round bottom flask, mix well, seal and ultrasonically disperse for 30 minutes, and react at 50°C for 24 Hour. The product was washed with absolute ethanol, centrifuged three times, 20 minutes each time, and the rotating speed was 4000r / min. Vacuum filtration is performed after centrifugation, and the pore size of the microporous membrane is 220 nm. The suction-filtered product was dried in a vacuum oven at 40°C to obtain dry CNT-NH 2 .
[0052] step 2
[0053] Add 1 g of CNT-NH to a round bottom flask 2 , 30ml tetrahydrofuran (THF) and 5ml triethylamine, ultrasonically dispersed for 40min, put the flask in an ice bath, add 2ml α-bromoisobutyryl bromide and 5ml THF to the constant pressure dropping funnel, and drop them into the flask. After dropping, the reaction was carried out a...
Embodiment 3
[0067] step 1
[0068] Add 3g of carboxylated carbon nanotubes with a diameter of 50-80nm, 5ml of anhydrous acetic acid, 95ml of anhydrous ethanol, and 3ml of silane coupling agent KH550 into a round bottom flask, mix well, seal and ultrasonically disperse for 30 minutes, and react at 50°C for 24 Hour. The product was washed with absolute ethanol, centrifuged three times, 20 minutes each time, and the rotating speed was 4000r / min. Vacuum filtration is performed after centrifugation, and the pore size of the microporous membrane is 220 nm. The suction-filtered product was dried in a vacuum oven at 40°C to obtain dry CNT-NH 2 .
[0069] step 2
[0070] Add 1 g of CNT-NH to a round bottom flask 2 , 30ml tetrahydrofuran (THF) and 5ml triethylamine, ultrasonically dispersed for 40min, put the flask in an ice bath, add 2ml α-bromoisobutyryl bromide and 5ml THF to the constant pressure dropping funnel, and drop them into the flask. After dropping, the reaction was carried out a...
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