Preparation method of magnetic molecular imprinted nanometer material
A magnetic molecular imprinting and nanomaterial technology, applied in the field of environmental pollutant removal and detection, can solve the problems of difficult to master polymerization conditions, difficult material morphology, low removal efficiency, etc., to save processing time and cost, easy to control, and to improve selective effect
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Embodiment 1
[0026] Take 20mg graphene / Fe 3 o 4 In the Erlenmeyer flask, add 40mL water, ultrasonic 30min, make graphene / Fe 3 o 4 Disperse evenly, add 0.003g saffloxacin, 5mL dopamine solution with a concentration of 5mg / L, 5mL tris(hydroxymethyl)aminomethane hydrochloride with a concentration of 200mmol / L, adjust the pH of the solution to 8.5, at 25°C, Shake and react in a shaker at 110 rpm for 2 hours. After the reaction, discard the supernatant under the condition of an external magnetic field, collect the magnetic material, wash it repeatedly with ultrapure water, and dry it in vacuum to obtain the magnetic molecularly imprinted nanomaterial.
Embodiment 2
[0028] Take 20mg graphene / Fe 3 o 4 In the Erlenmeyer flask, add 40mL water, ultrasonic 30min, make graphene / Fe 3 o 4 Disperse evenly, add 0.003g of saffloxacin, 5mL of dopamine solution with a concentration of 5mg / L, and 5mL of tris(hydroxymethyl)aminomethane hydrochloride with a concentration of 100mmol / L, adjust the pH of the solution to 8.5, at 25°C, Shake and react in a shaker at 110 rpm for 10 hours. After the reaction, discard the supernatant under the condition of an external magnetic field, collect the magnetic material, wash it repeatedly with ultrapure water, and dry it in vacuum to obtain the magnetic molecularly imprinted nanomaterial.
Embodiment 3
[0030] Take 40mg graphene / Fe 3 o 4 In the Erlenmeyer flask, add 40mL water, ultrasonic 30min, make graphene / Fe 3 o 4 Disperse evenly, add 0.003g saffloxacin, 5mL dopamine solution with a concentration of 5mg / L, 5mL tris(hydroxymethyl)aminomethane hydrochloride with a concentration of 200mmol / L, adjust the pH of the solution to 8.5, at 25°C, Shake and react in a shaker at 110 rpm for 2 hours. After the reaction, discard the supernatant under the condition of an external magnetic field, collect the magnetic material, wash it repeatedly with ultrapure water, and dry it in vacuum to obtain the magnetic molecularly imprinted nanomaterial.
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