A kind of preparation method of colored polymer nanosphere aqueous dispersion liquid
A technology of nanospheres and polymers, which can be used in dyeing, textiles and papermaking. It can solve problems such as increased viscosity, generation of air bubbles, and complicated preparation processes, and achieve good storage stability, increase steric hindrance, and improve Coulomb repulsion. Effect
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Embodiment 1
[0015] Step (1): Poly(styrene-methacrylic acid) nanospheres, poly(styrene-acrylic acid) and poly(styrene-butyl acrylate-methacrylic acid) Nanosphere dyeing, wherein the amount of disperse dye is 1% of the mass of polymer nanospheres, and the dyeing time is 1 hour.
[0016] Step (2): Nitrilotriacetic acid was added to the purified colored polymer nanosphere dispersion under the condition of pH 4, and magnetically stirred at room temperature for 2 hours. Wherein, the amount of nitrilotriacetic acid is 10% of the mass of the colored polymer nanospheres.
[0017] Step (3): Adjust the pH of the aqueous dispersion of colored polymer nanospheres obtained in the above step 2 to 8, and then use an ultrasonic pulverizer to sonicate for 20 minutes at a power of 100 watts.
[0018] Finally, a brightly colored aqueous dispersion of colored polymer nanospheres was obtained, and the stability coefficient was measured R At about 95%, it shows that the dispersion has good storage stability. ...
Embodiment 2
[0020] According to the above-mentioned embodiment 1, step 2 is changed, and ethylenediaminetetraacetic acid or sodium citrate is added to the purified colored polymer nanosphere dispersion in an amount of 10% of the colored polymer nanosphere content.
[0021] Finally, a brightly colored aqueous dispersion of colored polymer nanospheres was obtained, and the stability coefficient R was between 93% and 95%, indicating that the dispersion had good storage stability.
Embodiment 3
[0023] According to the above-mentioned embodiment 1, the amount of nitrilotriacetic acid in step 2 was changed to 2%, 4%, 6% and 8% of the mass of the colored polymer nanospheres. All the other formulas and processes are the same.
[0024] Finally, a brightly colored aqueous dispersion of colored polymer nanospheres was obtained, and the measured stability coefficient R was between 91% and 95%, indicating that the dispersion had good storage stability.
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