A kind of preparation method of graphene airgel that can compress and rebound
A graphene airgel, compression rebound technology, applied in the field of graphene, can solve the problems of graphene airgel with low mechanical properties, large specific surface area, high porosity, etc., to eliminate interfacial inclusions and diffusion, and improve stability Sexuality, high success rate effect
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Embodiment 1
[0021] A preparation method of a compressible rebound graphene airgel, comprising:
[0022] (1) Preparation of graphene inkjet precursor
[0023] Get graphene and put it into deionized water, and prepare a graphene dispersion liquid with a concentration of 8mg / ml, wherein the graphene sheet diameter is distributed at 300-800nm, and the thickness is 0.7-1.2nm, and it is processed under ultrasonic conditions for 2 hours to obtain a uniform For a stable graphene dispersion, 20uL of EDA auxiliary agent is added to the graphene dispersion to enhance the assembly between graphene sheets, and the graphene inkjet precursor is obtained by ultrasonication at room temperature for 0.5 hours.
[0024] (2) Preparation of carbon nanotube inkjet precursor
[0025] Put carbon nanotubes into deionized water and treat them under ultrasonic conditions for 20 minutes to prepare a carbon nanotube dispersion with a concentration of 8-10mg / ml, add 20uL of EDA auxiliary agent to the carbon nanotube d...
Embodiment 2
[0037] A preparation method of a compressible rebound graphene airgel, comprising:
[0038] (1) Preparation of graphene inkjet precursor
[0039]Get Graphene and put into deionized water, be mixed with the Graphene dispersion liquid of 8.5mg / ml concentration, wherein Graphene sheet diameter is distributed in 300-800nm, and thickness is 0.7-1.2nm, process 3 hours under ultrasonic condition, obtain For a uniform and stable graphene dispersion, 20uL of EDA auxiliary agent is added to the graphene dispersion to enhance the assembly between graphene sheets, and the graphene inkjet precursor is obtained by ultrasonication at room temperature for 0.7 hours.
[0040] (2) Preparation of carbon nanotube inkjet precursor
[0041] Put the carbon nanotubes into deionized water and treat them under ultrasonic conditions for 25 minutes to obtain a carbon nanotube dispersion, which is prepared into a carbon nanotube dispersion with a concentration of 8.5mg / ml, and 20uL of EDA is added to the...
Embodiment 3
[0053] A preparation method of a compressible rebound graphene airgel, comprising:
[0054] (1) Preparation of graphene inkjet precursor
[0055] Get graphene and put it into deionized water, and prepare a graphene dispersion liquid with a concentration of 9mg / ml, wherein the graphene sheet diameter is distributed at 300-800nm, and the thickness is 0.7-1.2nm, and it is processed under ultrasonic conditions for 4 hours to obtain a uniform For a stable graphene dispersion, 20uL of EDA auxiliary agent is added to the graphene dispersion to enhance the assembly between graphene sheets, and the graphene inkjet precursor is obtained by ultrasonication at room temperature for 1 hour.
[0056] (2) Preparation of carbon nanotube inkjet precursor
[0057] Put the carbon nanotubes into deionized water and treat them under ultrasonic conditions for 30 minutes to obtain a carbon nanotube dispersion, which is prepared into a carbon nanotube dispersion with a concentration of 9mg / ml, and 20...
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