Porous graphene oxide color-changing composite film and preparation method thereof
A composite film and fossil technology, applied in the direction of material electrochemical variables, instruments, measuring devices, etc., can solve the problems of limited physical size, limited practical application, etc., and achieve the effect of improving stability, stabilizing porous structure, and simple preparation
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Embodiment 1
[0025] A kind of porous graphene oxide color-changing composite film, its preparation method is:
[0026] (1) Clean the porous nickel foam substrate to remove the oxide film on the surface, then embed the cleaned porous nickel foam substrate in nano-graphite powder, and ultrasonically vibrate to make the nano-graphite powder penetrate into the pores of the porous nickel foam substrate for later use. ; Wherein, the size of the porous nickel foam substrate is 2cm×2cm, the thickness is 0.3mm, the particle size range of the nano-graphite powder is 20-500nm; the pore size range of the porous nickel foam substrate is 1-100um;
[0027] (2) Immerse the porous nickel base impregnated with nano-graphite powder in 200ml of concentrated sulfuric acid solution with a mass percent concentration of 98%, then add 30ml of potassium permanganate solution, stir evenly, heat up to 90°C, and add hydrogen peroxide dropwise Ultrasonic vibration is applied to carry out an oxidation reaction to obtain...
Embodiment 2
[0031] A kind of porous graphene oxide color-changing composite film, its preparation method is:
[0032] (1) Clean the porous nickel foam substrate to remove the oxide film on the surface, then embed the cleaned porous nickel foam substrate in nano-graphite powder, and ultrasonically vibrate to make the nano-graphite powder penetrate into the pores of the porous nickel foam substrate for later use. ; Wherein, the size of the porous nickel foam substrate is 2cm×2cm, the thickness is 0.6mm, the particle size range of the nano-graphite powder is 20-500nm; the pore size range of the porous nickel foam substrate is 1-100um;
[0033] (2) Immerse the porous nickel base impregnated with nano-graphite powder in 200ml of concentrated sulfuric acid solution with a mass percent concentration of 98%, then add 40ml of potassium permanganate solution, stir evenly, heat up to 80°C, and add hydrogen peroxide dropwise at the same time Ultrasonic vibration is applied to carry out an oxidation r...
Embodiment 3
[0037] A kind of porous graphene oxide color-changing composite film, its preparation method is:
[0038] (1) Clean the porous nickel foam substrate to remove the oxide film on the surface, then embed the cleaned porous nickel foam substrate in nano-graphite powder, and ultrasonically vibrate to make the nano-graphite powder penetrate into the pores of the porous nickel foam substrate for later use. ; Wherein, the size of the porous nickel foam base is 2cm×2cm, the thickness is 1mm, the particle size range of the nano-graphite powder is 20-500nm; the pore size range of the porous nickel foam base is 1-100um;
[0039] (2) Immerse the porous nickel base impregnated with nano-graphite powder in 200ml of concentrated sulfuric acid solution with a mass percent concentration of 98%, then add 50ml of potassium permanganate solution, stir evenly, heat up to 90°C, and drop hydrogen peroxide at the same time Ultrasonic vibration is applied to carry out an oxidation reaction to obtain gr...
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