Nano Fe3O4/graphene composite material with high saturation magnetization and electromagnetic shielding function as well as preparation method of composite material
A technology of ferroferric oxide and composite materials, which is applied in the field of high saturation magnetization nanometer ferroferric oxide/graphene composite materials and its preparation, can solve the problem of unfavorable broadband electromagnetic shielding materials, narrow electromagnetic shielding peak frequency range, material Problems such as particle size dispersion, to achieve good electromagnetic shielding performance, narrow particle size distribution, and stable particle size
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[0037] A preparation method of nano-iron tetroxide / graphene composite material: comprising the following steps:
[0038] 1) Dissolve trivalent iron salt, divalent iron salt and urea in water to obtain mixed solution 1;
[0039] 2) adding the reduced graphene oxide into water, ultrasonically dispersing and stirring to obtain a uniformly dispersed graphene suspension 2;
[0040] 3) Mix the above mixed solution 1 and suspension 2 evenly to obtain a mixed solution 3, and react the mixed solution 3 at 120-180°C for 3-5 hours,
[0041] 4) Cool the product after the reaction in the previous step, wash it with an ethanol solution, and dry it to a constant weight to obtain a nano-iron tetroxide / reduced graphene oxide composite material.
[0042] Preferably, the molar ratio of ferric iron to ferrous iron in step 1) is 1-3:1.
[0043] Preferably, the mass ratio of urea to total iron salts in step 1) is 0.1-0.4:1.
[0044]Preferably, the iron ion concentration in the mixed solution 1 i...
Embodiment 1
[0063] A preparation method of nano-iron tetroxide / graphene composite material with high saturation magnetization, comprising the following steps:
[0064] 1) Weigh 3g of ferrous chloride, 4.9g of ferric chloride and 2g of urea into a conical flask, add 30ml of deionized water, stir evenly to obtain mixed solution 1.
[0065] 2) Weigh 0.1027g of reduced graphene oxide into a beaker, add 20ml of deionized water, ultrasonically disperse and vigorously stir for 0.5h at a stirring speed of 1500-1600rpm to obtain a uniformly dispersed graphene suspension 2.
[0066] 3) Mix solution 1 and suspension 2 evenly to obtain mixed solution 3.
[0067] 4) Transfer the mixed solution 3 to the hydrothermal reaction kettle, control it in an oven to heat at 140°C for 3 hours, take out the reaction kettle, and naturally cool to room temperature. The product in the reaction kettle was taken out and washed 2-3 times with an ethanol solution with a volume concentration of 50%, and then dried in a ...
Embodiment 2
[0069] A preparation method of nano-iron tetroxide / graphene composite material with high saturation materialization strength, comprising the following steps:
[0070] 1) Weigh 3g of ferrous chloride, 5.7g of ferric chloride and 2g of urea into a conical flask, add 30ml of deionized water, stir evenly to obtain mixed solution 1.
[0071] 2) Weigh 0.1027g of reduced graphene oxide into a beaker, add 20ml of deionized water, ultrasonically disperse and vigorously stir for 0.5h at a stirring speed of 1200rpm, to obtain a uniformly dispersed graphene suspension 2.
[0072] 3) Mix solution 1 and suspension 2 evenly to obtain mixed solution 3.
[0073] 4) Transfer the mixed solution 3 to the hydrothermal reaction kettle, control it in an oven to heat at 140°C for 3 hours, take out the reaction kettle, and naturally cool to room temperature. The product in the reaction kettle was taken out and washed 2-3 times with an ethanol solution with a volume concentration of 50%, and then drie...
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