Preparation method of high light transmission and low dielectric fluorinated graphene/polyimide composite film
A technology of fluorinated graphene and polyimide, which is applied in the field of preparation of high light transmittance and low dielectric fluorinated graphene/polyimide composite films, can solve the problems of decreased light transmittance, limitation, etc. High mechanical strength, low dielectric, simple and controllable effects
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Embodiment 1
[0038] A method for preparing high light transmittance and low dielectric fluorinated graphene / polyimide composite film is carried out according to the following steps:
[0039] Step 1. Prepare the NMP suspension of fluorinated graphene: add fluorinated graphite to the solvent to obtain a fluorinated graphite suspension with a concentration of 1 mg / ml; then add diamine monomer to the fluorinated graphite suspension and place it in a sealed container The reaction kettle is hydrothermally intercalated at 85°C for 6 hours. After the hydrothermal intercalation reaction, ultrasonic peeling is performed for 25 hours. After centrifugation, the upper suspension is taken (the upper suspension is a solvent with fluorinated graphene), and the suspension Add 20 mL of NMP to the solution and distill under reduced pressure; where the solvent is acetonitrile, and the mass ratio of diamine monomer to fluorinated graphite is 1:10;
[0040] Step 2. Under the protection of inert gas, slowly add the N...
Embodiment 2
[0045] A method for preparing high light transmittance and low dielectric fluorinated graphene / polyimide composite film is carried out according to the following steps:
[0046] Step 1. Prepare the NMP suspension of fluorinated graphene: add fluorinated graphite to the solvent to obtain a fluorinated graphite suspension with a concentration of 1.5 mg / ml; then add diamine monomer to the fluorinated graphite suspension and place In a closed reactor, the hydrothermal intercalation reaction was conducted at 85°C for 8 hours. After the hydrothermal intercalation reaction, ultrasonic peeling was performed for 30 hours. After centrifugation, the upper suspension was taken (the upper suspension is a solvent suspended in fluorinated graphene), and Add 20 mL of NMP to the suspension and distill under reduced pressure; where the solvent is acetonitrile, and the mass ratio of diamine monomer to fluorinated graphite is 1:10;
[0047] Step 2. Under the protection of inert gas, slowly add the NMP...
Embodiment 3
[0052] A method for preparing high light transmittance and low dielectric fluorinated graphene / polyimide composite film is carried out according to the following steps:
[0053] Step 1. Prepare the NMP suspension of fluorinated graphene: add fluorinated graphite to the solvent to obtain a fluorinated graphite suspension with a concentration of 2mg / ml; then add diamine monomer to the fluorinated graphite suspension and place it in an airtight The reaction kettle is hydrothermally intercalated at 85°C for 6 hours. After the hydrothermal intercalation reaction, ultrasonic peeling is performed for 48 hours. After centrifugation, the upper suspension is taken (the upper suspension is a solvent with fluorinated graphene), and the suspension Add 20mL NMP to the solution and distill under reduced pressure; where the solvent is acetonitrile, and the mass ratio of diamine monomer to fluorinated graphite is 1:15;
[0054] Step 2. Under the protection of inert gas, slowly add the NMP suspensio...
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