Superhydrophobic coating and preparation method thereof
A technology of superhydrophobic coatings and glycidyl ethers, applied in polyester coatings, polyurea/polyurethane coatings, coatings, etc., can solve the problems of poor comprehensive performance of paint films, and achieve high comprehensive paint film performance, narrow molecular weight distribution, good hydrophobic effect
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Embodiment 1
[0034] Embodiment 1: The molecular weight of fluorine-containing block copolymer is 9000, and the structure is:
[0035]
[0036] where m=56, n=6.
[0037] A. Preparation of fluorine-containing block copolymer:
[0038] Add glycidyl methacrylate (GMA) 14.22g (0.1mol), ethyl α-bromoisobutyrate (EBiB) 0.3467g (0.001778mol), CuBr 2 0.0122g (5.0×10 -5 mol), pentamethyldiethylenetriamine (PMDETA) 0.08665g (5.0×10 -4 mol), azobisisobutyronitrile (AIBN) 0.1232g (7.5×10 -4 mol), 7.11 g of toluene, after mixing uniformly, nitrogen was passed for 1 h, and reacted in an oil bath at 70° C. for 5 h. After the conversion rate reached 80%, a light yellow viscous product was obtained. Then, 1.867 g (0.0111 mol) of trifluoroethyl methacrylate (TFEMA) was added into the reaction vessel, and the reaction was continued for 5 hours to obtain a fluorine-containing block copolymer.
[0039] B. Preparation of Superhydrophobic Coatings
[0040] 1. Nano-TiO with amino groups on the surface 2 pr...
Embodiment 2
[0048] Embodiment 2: the molecular weight of fluorine-containing block copolymer is 12000, and the structure is:
[0049]
[0050] where m=70, n=8.
[0051] A. Preparation of fluorine-containing block copolymer:
[0052] Add GMA 14.22g (0.1mol), EBiB 0.2774g (0.001422mol), CuBr 2 0.0122g (5.0×10 -5 mol), PMDETA 0.08665g (5.0×10 -4 mol), AIBN 0.1232g (7.5×10 -4 mol), 7.11 g of toluene, after mixing uniformly, nitrogen was passed for 1 h, and reacted in an oil bath at 70° C. for 5 h. After the conversion rate reached 80%, a light yellow viscous product was obtained. Then, 2.778 g (0.0111 mol) of hexafluorobutyl methacrylate (HFBMA) was added into the reaction vessel, and the reaction was continued for 5 hours to obtain a fluorine-containing block copolymer.
[0053] B. Preparation of Superhydrophobic Coatings
[0054] 1. Preparation of nano-ZnO with amino groups on the surface
[0055] Add 0.3g KH550, 5g nano-ZnO, and 50g ethyl acetate into the reactor, stir the reacti...
Embodiment 3
[0062] Embodiment 3: the molecular weight of fluorine-containing block copolymer is 15000, and the structure is:
[0063]
[0064] where m=84, n=9.
[0065] A. Preparation of fluorine-containing block copolymer:
[0066] Add GMA 14.22g (0.1mol), EBiB 0.2311g (0.001185mol), CuBr 2 0.0122g (5.0×10 -5 mol), PMDETA 0.08665g (5.0×10 -4 mol), AIBN 0.1232g (7.5×10 -4 mol), 7.11 g of toluene, after mixing uniformly, nitrogen was passed for 1 h, and reacted in an oil bath at 70° C. for 5 h. After the conversion rate reached 80%, a light yellow viscous product was obtained. Then, 4.444 g (0.0111 mol) of dodecafluoroheptyl methacrylate (DFHMA) was added into the reaction vessel, and the reaction was continued for 5 hours to obtain a fluorine-containing block copolymer.
[0067] B. Preparation of Superhydrophobic Coatings
[0068] 1. Nano-SiO with amino groups on the surface 2 preparation of
[0069] 0.60g KH550, 10g nano-SiO 2 1. 50 g of ethyl acetate was added to the reacto...
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