Boron/nitrogen double-doped carbon nanotube-carbon nanosheet composite material and preparation method thereof
A technology of carbon nanotubes and carbon nanosheets, applied in the field of wave-absorbing materials, can solve problems such as electromagnetic wave pollution, achieve the effects of increased loss probability, simple and convenient preparation method, and low matching thickness
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Embodiment 1
[0031] The preparation method of the boron / nitrogen double-doped carbon nanotube-carbon nanosheet composite material assisted by the molten salt method of the present invention comprises the following steps:
[0032] Step 1: Dissolve 4.75g nickel chloride hexahydrate in 40ml water and stir well.
[0033] Step 2: Dissolve 1.52g of sodium borohydride and 0.16g of sodium hydroxide in 40ml of water and mix well. Slowly and uniformly drop the prepared solution into the prepared solution in step 1 to obtain a black nickel boride precipitate.
[0034] Step 3: wash the nickel boride precipitate obtained in step 2 with ethanol and water, filter, and dry in an oven at 80°C.
[0035] Step 4: Mix 0.128g of the clean nickel boride obtained in step 3 with 1.682g of dicyandiamide and grind them evenly.
[0036]Step 5: Mix and grind the mixture obtained in step 4 with 45.25g of sodium chloride evenly, then transfer it into a porcelain boat, calcining and heat treatment under inert gas, the ...
Embodiment 2
[0039] The preparation method of the boron / nitrogen double-doped carbon nanotube-carbon nanosheet composite material assisted by the molten salt method of the present invention comprises the following steps:
[0040] Step 1: Dissolve 4.75g nickel chloride hexahydrate in 40m1 water and stir evenly.
[0041] Step 2: Dissolve 1.52g of sodium borohydride and 0.16g of sodium hydroxide in 40ml of water and mix well. Slowly and uniformly drop the prepared solution into the prepared solution in step 1 to obtain a black nickel boride precipitate.
[0042] Step 3: wash the nickel boride precipitate obtained in step 2 with ethanol and water, filter, and dry in an oven at 80°C.
[0043] Step 4: Mix 0.128g of the clean nickel boride obtained in step 3 with 1.682g of dicyandiamide and grind them evenly.
[0044] Step 5: Mix and grind the mixture obtained in step 4 with 45.25g of sodium chloride evenly, then transfer it into a porcelain boat, calcining and heat treatment under inert gas, t...
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