A kind of flame retardant antibacterial transparent superamphiphobic coating and its preparation method and application
A super-amphiphobic, coating technology, applied in the direction of fire-resistant coatings, anti-fouling/underwater coatings, coatings, etc., can solve problems such as single function, harsh reaction conditions, single substrate selection, etc.
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Embodiment 1
[0077] Ultrasonic disperse 0.519g of silica nanoparticles into a mixed solution of 4g of water, 0.4g of absolute ethanol and 40g of cyclohexane, and then add 0.081g of dimethyltetradecyl[3-(trimethoxysilyl) Propyl] ammonium chloride, reacted for 28 hours, separated and washed to obtain silica nanoparticles modified with nitrogen-containing cationic silane coupling agent.
[0078] 0.5g of the prepared nitrogen-containing cationic silane coupling agent-modified silica nanoparticles, 0.5g of ammonium polyphosphate particles and 1.3g of perfluorodecyltriethoxysilane were stirred and dispersed into 10g of water, 157g In the mixed solution of ethanol and 30.7g chlorobenzene, after reacting for 6h, a flame-retardant and antibacterial transparent super-amphiphobic coating was obtained.
[0079] The ammonium polyphosphate particles used therein have an average size 15 microns larger than the average size of the silica nanoparticles.
Embodiment 2
[0081] Stir and disperse 0.08549g of zinc oxide nanoparticles into a mixed solution of 20.91g of anhydrous n-propanol and 24g of chloroform, then add 0.00451g of dimethyl octadecyl [3-(trimethoxysilyl) propyl] bromide ammonium chloride, reacted for 12 hours, and separated and washed to obtain zinc oxide nanoparticles modified with nitrogen-containing cationic silane coupling agent.
[0082] 30g of zinc oxide nanoparticles modified by the nitrogen-containing cationic silane coupling agent, 60g of polythiophenylphosphonic acid diphenylsulfone ester particles and 60g of perfluorodecyltrimethoxysilane were ultrasonically dispersed to 0.25 g water and 49.75 g of n-propanol in a mixed solution, reacted for 2 hours to obtain a flame-retardant antibacterial transparent super-amphiphobic coating.
[0083] The average size of the polythiophenyl phosphonate diphenyl sulfone ester particles used therein is 500 nanometers larger than the average size of the zinc oxide nanoparticles.
Embodiment 3
[0085] 5g of polyurea-formaldehyde nanoparticles were ultrasonically stirred and dispersed into a mixed solution of 1g of water, 20g of anhydrous glycerol and 15g of toluene, and then 4g of dimethyltetradecyl[3-(triethoxysilyl)propyl was added. ] ammonium bromide, reacted for 72h, separated and washed to obtain polyurea-formaldehyde nanoparticles modified with nitrogen-containing cationic silane coupling agent.
[0086] 0.1g of the prepared nitrogen-containing cationic silane coupling agent-modified polyurea-formaldehyde nanoparticles, 0.04g of double-spiro ring structure phosphate particles, and 0.1g of perfluorooctyltriethoxysilane were stirred and dispersed to 59.928g In the mixed solution of water, 139g glycerol and 0.832g chloroform, after reacting for 96h, a flame-retardant and antibacterial transparent super-amphiphobic coating was obtained.
[0087] Wherein the average size of the double-helical phosphate particles is 800 nanometers larger than the average size of the ...
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