Fluorine-containing organic silicon grafted copolymer as well as preparation method and application thereof
A graft copolymer and organosilicon technology, which is applied to the fluorine-containing organosilicon graft copolymer and the preparation method thereof and the application field in the surface coating, can solve the problems of large friction coefficient and low light transmittance, and achieves the The effect of excellent anti-fouling ability, good light transmittance and low coefficient of kinetic friction
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Embodiment 1
[0026] This embodiment provides a kind of organosilicon graft copolymer, and its specific preparation method is:
[0027] In a 500ml four-necked flask, add 45g of monomers to be polymerized A1, 50g of monomers to be polymerized A2, 5g of monomers to be polymerized A3, add 100g of dipropylene glycol monomethyl ether to dissolve the above monomers to be polymerized, add 2g of initiator azobis Isobutyronitrile;
[0028] Nitrogen was introduced to reduce the oxygen content in the four-necked flask to below 500ppm, and the temperature was raised to 80°C. After 18 hours of reaction, the monomer conversion rate was monitored by gas chromatography. When the monomer conversion rate reached 98%, the heating reaction was terminated.
[0029] A1 is mercapto-containing polydimethylsiloxane (XIAMETER OFS-2396), A2 is perfluoropolyether (meth)acrylate, and A3 is γ-(methacryloyloxy)propyltrimethoxysilane.
[0030] The fluorine-containing silicone graft copolymer was tested by gel permeation ...
Embodiment 2
[0034] This embodiment provides a kind of organosilicon graft copolymer, and its specific preparation method is:
[0035] Add 30g of monomers to be polymerized A1, 65g of monomers to be polymerized A2, 5g of monomers to be polymerized A3 in a 500ml four-necked flask, add 67g of dipropylene glycol and tripropylene glycol with a mass ratio of 1:1 to dissolve the above monomers to be polymerized , add 3g initiator azobisisobutyronitrile;
[0036] Nitrogen was introduced to reduce the oxygen content in the four-neck flask to below 500ppm, and the temperature was raised to 25°C. After 18 hours of reaction, the monomer conversion rate was monitored by gas chromatography. When the monomer conversion rate reached 99%, the heating reaction was terminated.
[0037] A1 is acrylate-containing polydimethylsiloxane (XIAMETER OFS-4246), A2 is perfluoropolyether (meth)acrylate, A3 is γ-(methacryloyloxy)propyltrimethoxysilane .
[0038] The silicone graft copolymer was tested by gel permeati...
Embodiment 3
[0041] This embodiment provides a kind of organosilicon graft copolymer, and its specific preparation method is:
[0042] Add 20g of monomer to be polymerized A1, 75g of monomer to be polymerized A2, 5g of monomer to be polymerized A3 in a 500ml four-necked flask, add 100g of dipropylene glycol monomethyl ether to dissolve the above monomer to be polymerized, add 0.2g of initiator azo Diisobutyronitrile;
[0043] Nitrogen was introduced to reduce the oxygen content in the four-necked flask to below 500ppm, and the temperature was raised to 110°C. After 18 hours of reaction, the monomer conversion rate was monitored by gas chromatography. When the monomer conversion rate reached 98%, the heating reaction was terminated.
[0044] A1 is mercapto-containing polydimethylsiloxane (XIAMETER OFS-2397), A2 is perfluoropolyether (meth)acrylate, and A3 is γ-(methacryloyloxy)propyltrimethoxysilane.
[0045] The silicone graft copolymer was tested by gel permeation chromatography (Agilent...
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