Method for preparing aggregation-induced emission type polymer fluorescent nanoparticle through mini-emulsion polymerization initiated by oil-soluble initiator
A technology of aggregation-induced luminescence and oil-soluble initiators, which is applied in the direction of luminescent materials, chemical instruments and methods, etc., can solve the problems of complex processing and cumbersome process, and achieve the effect of simple preparation process, simple process and convenient coupling modification
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Embodiment 1
[0052] The emulsifier is selected from sodium lauryl sulfate, weighs 4 grams, and dissolves in 125 grams of distilled water to obtain an aqueous emulsifier solution.
[0053] 1.0 g of 1-allyl-1-methyl-2,3,4,5-tetraphenylsilole, 0.6 g of hexadecane and 0.5 g of azobisisobutyronitrile were dissolved in 9.0 g of styrene to obtain Oil phase solution. The obtained oil phase solution was added to the emulsifier aqueous solution, and the obtained mixed dispersion liquid was stirred and pre-emulsified to obtain a coarse emulsion. The container containing the coarse emulsion was placed in an ice-water bath at 0°C, and ultrasonic waves with a power of 350W were used for 15 minutes. A stable monomer miniemulsion is obtained.
[0054] Nitrogen was passed through the monomer miniemulsion to remove oxygen, the temperature was raised to 65° C., and reacted for 5 hours under the protection of nitrogen to obtain aggregation-induced luminescent polymer fluorescent nanoparticle emulsion.
[00...
Embodiment 2
[0057] The emulsifier is cetyltrimethylammonium bromide, weighed 0.6 g, and dissolved in 40 g of distilled water to obtain an emulsifier aqueous solution.
[0058] 2.5 g of 1-vinyl-1-methyl-2,3,4,5-tetraphenylsilole, 1 g of n-eicosane and 0.9 g of dibenzoyl peroxide were dissolved in 7.5 g of methyl methacrylate In the process, the obtained oil phase solution was added to the emulsifier aqueous solution, and the obtained mixed dispersion liquid was stirred and pre-emulsified to obtain a coarse emulsion. The container containing the coarse emulsion was placed in an ice-water bath at 0°C, and an ultrasonic wave with a power of 500W was used for 10 Minutes, a stable monomer miniemulsion was obtained.
[0059] Nitrogen was passed through the monomer mini-emulsion to remove oxygen, the temperature was raised to 75°C, and the reaction was carried out for 15 hours under the protection of nitrogen to obtain the aggregation-induced light-emitting polymer fluorescent nanoparticle emulsi...
Embodiment 3
[0062] The emulsifier is selected from the compound emulsification system of sodium dodecylbenzenesulfonate and OP-10, each weighing 0.5 g, and dissolving in 200 g of distilled water to obtain an aqueous emulsifier solution.
[0063] 0.5 gram of the compound shown in formula (IV) (for the synthesis method, refer to the literature [Polym Chem 2014,5,683-688]), 0.3 gram of n-hexadecane and 0.15 gram of azobisisoheptanonitrile were dissolved in 9.5 gram of methyl methacrylate , the obtained oil phase solution is added to the emulsifier aqueous solution, and the obtained mixed dispersion liquid is stirred and pre-emulsified to obtain a coarse emulsion, and the container containing the coarse emulsion is placed in an ice-water bath at 0°C, and ultrasonic waves with a power of 650W are used for 5 minutes , to obtain a stable monomer miniemulsion.
[0064] Nitrogen was passed through the monomer miniemulsion to remove oxygen, the temperature was raised to 55° C., and the reaction was...
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