Method for efficiently dispersing modified carbon nano tubes
A technology of carbon nanotubes and nanotubes, which is applied in the field of high-efficiency dispersion of modified carbon nanotubes, can solve problems such as thermodynamic instability, inability to disperse carbon nanotubes, and affect the application of carbon nanotubes, achieve a thorough dispersion effect, and improve interface interaction function, the effect of good dispersibility
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Embodiment 1
[0016] A method for highly efficient dispersion of modified carbon nanotubes, characterized in that it specifically comprises the following steps:
[0017] (1) Carbon nanotube pretreatment: In a closed anti-corrosion kettle, take carbon nanotubes and concentrated nitric acid according to the weight ratio of 10:3, activate the anti-corrosion kettle in an oven with a temperature of 120°C for 5 hours, wash with water, and vacuum at 65°C dry suction filtration;
[0018] (2) Preparation of carbon nanotube dispersion: mix absolute ethanol and 30wt% hydrogen peroxide at a weight ratio of 1:1, add 8% carbon nanotubes, and process in an ultrasonic environment with an ultrasonic frequency of 30kHz and 100W for 2.5h ;
[0019] (3) Graphene dispersion: Dissolve graphene and diphenolic propane type epoxy resin in absolute ethanol according to the weight ratio, and ultrasonically disperse for 35 minutes under the conditions of ultrasonic frequency 20KHz and ultrasonic power 100W;
[0020]...
Embodiment 2
[0023] A method for highly efficient dispersion of modified carbon nanotubes, characterized in that it specifically comprises the following steps:
[0024] (1) Carbon nanotube pretreatment: In a closed anti-corrosion kettle, take carbon nanotubes and concentrated nitric acid according to the weight ratio of 10:4, activate the anti-corrosion kettle in an oven with a temperature of 125°C for 4.5h, wash with water, and store at 65°C Vacuum drying and suction filtration;
[0025] (2) Preparation of carbon nanotube dispersion: mix absolute ethanol and 30wt% hydrogen peroxide at a weight ratio of 1:1, add 9% carbon nanotubes, and process in an ultrasonic environment with an ultrasonic frequency of 31kHz and 100W for 2.3h ;
[0026] (3) Graphene dispersion: Dissolve graphene and diphenolic propane type epoxy resin in absolute ethanol according to the weight ratio, and ultrasonically disperse for 30 minutes under the condition of ultrasonic frequency of 23KHz and ultrasonic power of ...
Embodiment 3
[0030] A method for highly efficient dispersion of modified carbon nanotubes, characterized in that it specifically comprises the following steps:
[0031] (1) Carbon nanotube pretreatment: In a closed anti-corrosion kettle, take carbon nanotubes and concentrated nitric acid according to the weight ratio of 10:4, activate the anti-corrosion kettle in an oven at 130°C for 4 hours, wash with water, and vacuum at 65°C dry suction filtration;
[0032] (2) Preparation of carbon nanotube dispersion: mix absolute ethanol with 30wt% hydrogen peroxide at a weight ratio of 1:1, add 10% carbon nanotubes, and process for 2 hours in an ultrasonic environment with an ultrasonic frequency of 32kHz and 100W;
[0033] (3) Graphene dispersion: Dissolve graphene and diphenolic propane type epoxy resin in absolute ethanol according to the weight ratio, and ultrasonically disperse for 25 minutes under the condition of ultrasonic frequency of 25KHz and ultrasonic power of 100W;
[0034] (4) Materi...
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