A kind of latex particle anti-reflection coating liquid and its preparation method and application
An anti-reflection, latex particle technology, used in textiles, papermaking, fiber processing, etc., can solve problems such as the morphology of additives that are not mentioned, and achieve the effect of avoiding dependence and making the finishing process simple and easy.
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Embodiment 1
[0045] Weigh 0.2g of sodium lauryl sulfate and add it to 74.77g of water. After mechanically stirring and mixing, add 10g of methyl methacrylate and 8g of divinylbenzene to the solution. After mechanically stirring, put it in N in the water bath 2 15min, after heating up to 75℃, dissolve 0.03g potassium persulfate in 5g water and add it to the above reaction mixture. After 2.5 hours of reaction, the reaction solution (ie the latex core structure emulsion) is obtained, which is slowly dripped into the reaction solution Add 1.5g of butyl acrylate and 0.5g of methacryloxypropyltrimethoxysilane, and add dropwise within 0.5h. After continuing the reaction for 3 hours, the temperature was raised to 90° C. and kept for 30 minutes to prepare an anti-reflective coating liquid composed of the latex particle solution product 1 with a core-shell structure, with a solid content of 20%.
[0046] Dilute the product 1 and use the Malvern nanometer to measure the particle size distribution curve,...
Embodiment 2
[0050] Weigh 0.5g of sodium dodecylbenzene sulfonate into 67.46g of water, mechanically stir and mix well, then add 12g of methyl methacrylate and 8g of ethylene glycol dimethacrylate to the solution. After stirring evenly, put it in a water bath and pass N 2 After 20min, when the temperature reaches 70℃, dissolve 0.04g potassium persulfate in 5g water and add it to the above reaction mixture. After reacting for 2h, slowly add 5g butyl acrylate and 2g methacryloyloxy to the reaction solution. The mixed solution of propyltrimethoxysilane was added dropwise within 2h. After continuing the reaction for 2.5 hours, the temperature was raised to 85° C. and kept for 45 minutes to prepare an anti-reflective coating liquid composed of a core-shell structure latex particle solution product 2 with a solid content of 27%.
[0051] Figure 4 It is a TEM picture of product 2. From Figure 4 It can be seen that the product 2 has formed a core-shell structure and still maintains a good dispersi...
Embodiment 3
[0053] Weigh 1g of sodium alkyl sulfonate and add it to 68.95g of water, mechanically stir and mix well, add 10g of methyl methacrylate and 5g of divinylbenzene to the solution, and after mechanically stir evenly, put it into a water bath Zhongtong N 2 20min, after the temperature reaches 80℃, dissolve 0.05g ammonium persulfate in 5g water and add it to the above reaction mixture. After reacting for 3h, slowly drop 8g acrylonitrile and 2g [4-(methacrylic acid) into the reaction solution. The mixture of acyloxy)butyl]pentamethylsiloxane was added dropwise within 2h. After continuing the reaction for 3 hours, the temperature was raised to 90° C. and kept for 40 minutes to prepare an anti-reflective coating liquid composed of a core-shell structure latex particle solution product 3, with a solid content of 25%.
[0054] Figure 5 It is an AFM photo of the latex film of product 3, and it can be seen that the surface of the coating film has an uneven nano rough structure. by image 3...
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