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High Molecular Weight Polystyrene Obtained by Cationic Emulsion Polymerization Catalyzed by Imidazolium-Based Ionic Liquid

机译:咪唑基离子液体催化乳液聚合获得高分子量聚苯乙烯

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摘要

The ionic liquid 1-n-butyl-3-methylimidazolium heptachlorodiferrate (BMI.Fe2Cl7) is efficiently used as catalyst in the cationic emulsion polymerization of styrene. The effect of different reaction temperatures, surfactant, and ionic liquid concentrations on polymer properties as molecular weight distribution and particle size is evaluated. High weight average molecular weights, above 1000 kDa, are achieved at 70% of conversion in 100 nm polystyrene particles formed mainly by micellar nucleation. Particle sizes and molecular weights increase with the decrease of the amount of surfactant. Even at low concentrations, BMI.Fe2Cl7/styrene molar ratio equal to 1/1000, the ionic liquid proves to be efficient for the emulsion polymerization of styrene, and lower ionic liquid concentrations lead to the formation of longer polymer chains.
机译:离子液体1-正丁基-3-甲基咪唑鎓七氯二恶酸酯(BMI.Fe2Cl7)可有效地用作苯乙烯的阳离子乳液聚合催化剂。评估了不同反应温度,表面活性剂和离子液体浓度对聚合物性能(如分子量分布和粒度)的影响。在主要由胶束形核形成的100 nm聚苯乙烯颗粒中,转化率达到70%时,可以实现1000 kDa以上的高重均分子量。粒度和分子量随表面活性剂用量的减少而增加。即使在低浓度下,BMI.Fe2Cl7 /苯乙烯摩尔比等于1/1000,离子液体也被证明对于苯乙烯的乳液聚合是有效的,并且较低的离子液体浓度会导致形成更长的聚合物链。

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