Grafted copolymer containing epoxy groups and application of grafted copolymer
A graft copolymer and epoxy group technology, which is applied in the synthesis and application of graft copolymers, can solve problems such as incompatibility and limited application, achieve good compatibilization effect, and enhance the combination between two phases. strength, the effect of improving compatibility
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Embodiment 1
[0050] Under the protection of nitrogen, mix and stir 80g methyl methacrylate, 20g ethyl acrylate, 1.5g chain transfer agent mercaptopropanol, 4.5g initiator azobisisobutyronitrile and 200g solvent toluene, and then move to a stirring In a four-necked flask with a paddle, a condenser and a thermometer, heat to 65°C, and react for 6 hours to obtain a toluene solution containing polymer D; lower the reaction system to room temperature, add 0.01g of polymerization inhibitor hydroquinone, 0.04g Catalyst N,N-dimethylbenzylamine and 2.1g of monomer E methacryloyl chloride containing carbon-carbon double bonds (the molar ratio of polymer D to monomer E is 1:1.2), after stirring at room temperature for 8 hours, the product After rotary evaporation and drying, a polymer C containing a carbon-carbon double bond was obtained, and the number average molecular weight of the obtained polymer C was about 4200 through GPC testing.
[0051] Under nitrogen protection, 80g methyl methacrylate, 4...
Embodiment 2
[0053] Under nitrogen protection, after mixing and stirring 60g methyl methacrylate, 50g butyl acrylate, 1.5g chain transfer agent mercaptopropanol, 3.5g initiator azobisisobutyronitrile and 250g solvent xylene, move to a In a four-neck flask with a stirring blade, a condenser and a thermometer, heat to 65°C and react for 6 hours to obtain a xylene solution containing polymer D; lower the reaction system to room temperature, add 0.01g of polymerization inhibitor hydroquinone, 0.02g catalyst triethylamine and 2.1g carbon-carbon double bond-containing monomer E methacryloyl chloride (the molar ratio of polymer D to monomer E is 1:1.2), stirred at room temperature for 5 hours, and the product was dried by rotary evaporation , to obtain a carbon-carbon double bond-containing polymer C. According to the GPC test, it can be seen that the number average molecular weight of the obtained polymer C is about 5100.
[0054] Under nitrogen protection, 110g of styrene, 20g of ethyl acrylat...
Embodiment 3
[0056] Under the protection of nitrogen, mix and stir 80g ethyl methacrylate, 40g butyl acrylate, 2g chain transfer agent mercaptoethanol, 1.2g initiator azobisisoheptanonitrile and 150g solvent ethyl acetate, and then move to a stirring Paddle, condenser and a four-necked flask with a thermometer, heated to 70°C, and reacted for 5 hours to obtain an ethyl acetate solution containing polymer D; the reaction system was lowered to room temperature, and 0.01g of polymerization inhibitor hydroquinone, 0.02g catalyst triethylamine and 5.0g carbon-carbon double bond-containing monomer E isocyanoethyl methacrylate (the molar ratio of polymer D to monomer E is 1:1.25), after stirring at room temperature for 10 hours, the product After rotary evaporation and drying, a high molecular polymer C containing carbon-carbon double bonds is obtained. According to the GPC test, it can be seen that the number average molecular weight of the obtained polymer C is about 11900.
[0057] Under nitr...
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