Magnetic nanoparticle/macromolecular Janus microparticle and preparation method and application thereof
A technology of magnetic nanoparticles and high molecular polymers, applied in the field of magnetic nanoparticle/polymer composite Janus particles and its preparation, which can solve the problems of restricting the application research of Janus particle related properties, difficult to control the morphology and properties of particles, and monodisperse particles Poor performance and other problems, to achieve the effect of common equipment, good monodispersity and powerful functions
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Embodiment 1
[0044] 1) 0.7 mg of Fe with a particle size of 10 nm 3 o 4 Nanoparticles, 13 mg of polystyrene with a weight average molecular weight of 3500 and 13 mg of polypyrrolidone with a weight average molecular weight of 8000 were dissolved in 10 mL of dichloromethane, and the resulting mixed solution was used as a dispersed phase;
[0045] The continuous phase was a 0.20 wt% aqueous solution of sodium dodecylsulfonate.
[0046] The dispersed phase and the continuous phase were injected into different channels of the microfluidic chip, the injection rate of the dispersed phase was 100uL / min; the injection rate of the continuous phase was 5mL / min; the dispersed phase was sheared by the continuous phase in the microfluidic chip Cut into highly monodisperse magnetic monoemulsion droplets of 5 µm.
[0047] 2) The single emulsion droplet system obtained in step 1) was left to stand at room temperature for 40 minutes, and then the droplets were placed in a 450G magnetic field for 30 minut...
Embodiment 2
[0050] 1) 0.7 mg of Fe with a particle size of 10 nm 3 o 4 Nanoparticles, 13 mg of polystyrene with a weight average molecular weight of 3500 and 13 mg of polylactic acid with a weight average molecular weight of 7000 were dissolved in 10 mL of methylene chloride, and the resulting mixed solution was used as a dispersed phase;
[0051]The continuous phase is a 0.25 wt% aqueous solution of sodium dodecylsulfonate.
[0052] The dispersed phase and the continuous phase were injected into different channels of the microfluidic chip, the injection rate of the dispersed phase was 100uL / min; the injection rate of the continuous phase was 5mL / min; the dispersed phase was sheared by the continuous phase in the microfluidic chip Highly monodisperse magnetic monoemulsion droplet system cut into 10 microns.
[0053] 2) The single emulsion droplet system obtained in step 1) was left to stand at room temperature for 40 minutes, and then the droplets were placed in a 350G magnetic field fo...
Embodiment 3
[0056] 1) 0.7 mg of Fe with a particle size of 10 nm 3 o 4 Nanoparticles, 0.01 mmol green fluorescein (purchased from Sigma-Aldrich Company), 13 mg of polystyrene with a weight average molecular weight of 3500, and 13 mg of polylactic acid with a weight average molecular weight of 7000 were dissolved in 10 mL of dichloromethane to obtain The mixed solution is used as the dispersed phase;
[0057] The continuous phase is a 0.25 wt% aqueous solution of sodium dodecylsulfonate.
[0058] The dispersed phase and the continuous phase were injected into different channels of the microfluidic chip, the injection rate of the dispersed phase was 100uL / min; the injection rate of the continuous phase was 5mL / min; the dispersed phase was sheared by the continuous phase in the microfluidic chip Cut into highly monodisperse magnetic monoemulsion droplets of 9 µm.
[0059] 2) The single emulsion droplet system obtained in step 1) was left to stand at room temperature for 50 minutes, and th...
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