Preparation method and application of a core-shell type fluoropolymer nanoemulsion
A nanoemulsion and polymer technology, which is applied in the direction of drilling compositions, chemical instruments and methods, etc., can solve the problems of increased cost and difficulty in processing, and achieve good compatibility, easy access, and strong wetting reversal ability Effect
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Embodiment 1
[0044] In a 250mL three-necked flask with a reflux device and electromagnetic stirring, add 50mL distilled water and 1.0g sodium perfluorononenyloxybenzenesulfonate respectively, and after the solid is completely dissolved, add 1.0g (0.01mol) methyl methacrylate Ester (acrylic monomer) and 0.5g initiator azobisisobutyronitrile (AIBN) were dissolved in 50mL of N,N-dimethylformamide (DMF) and added to water, and heated to React at 80°C for 4 hours to obtain a prepolymer emulsion. After cooling to room temperature, add 6.0 g (0.015 mol) of dodecafluoroheptyl methacrylate (fluorine-containing monomer) into the prepolymer emulsion, ultrasonically emulsify at room temperature for 30 minutes, then raise the temperature to 80 ° C for 4 hours to obtain a white Emulsion products. The particle size distribution of the emulsion is 150-250nm; it is placed under normal temperature and pressure for 60 days without delamination.
Embodiment 2
[0046] The preparation method was as described in Example 1, except that the acrylic monomer was 1.4 g (0.01 mol) butyl methacrylate. The obtained product emulsion has a particle size distribution of 200-250nm; it is placed under normal temperature and pressure for 60 days without delamination.
Embodiment 3
[0048] The preparation method was as described in Example 1, except that the fluorine-containing monomer was 6.5 g (0.015 mol) of 2-(perfluorohexyl) ethyl methacrylate. The obtained product emulsion has a particle size distribution of 150-250nm; it is placed under normal temperature and pressure for 60 days without delamination.
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