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A Modeling Study on the RAFT Polymerization of Vinyl Monomers in Supercritical Carbon Dioxide

机译:超临界二氧化碳中乙烯基单体的RAFT聚合反应模型研究

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The kinetic modeling of reversible addition-fragmentation chain transfer (RAFT) dispersion homopolymerization of vinyl monomers in supercritical carbon dioxide is addressed. The model accounts for two reaction loci, a polymer-rich phase (dispersed) and a solvent-rich phase (continuous). In one of the models, the partition of low molar mass components is estimated by using simple equations. The second model takes into account mass transfer of the components and is built using the phase-exchange and k(s)-termination steps of the Predici software. Model predictions are compared against experimental data of polymerization of styrene using 2,2-Azobis(2-methylpropionitrile) (AIBN)/S-thiobenzoyl thioglycolic acid/supercritical carbon dioxide. The model captures well the effect of the amount of RAFT agent on polymerization rate and molar mass development. Both models allow calculation of the concentrations of all the species present in the system for each phase. The performance of the system is compared against the conventional case (in the absence of RAFT agent).
机译:解决了乙烯基单体在超临界二氧化碳中可逆的加成-断裂链转移(RAFT)分散均聚的动力学模型。该模型说明了两个反应位点,一个富聚合物相(分散的)和一个富溶剂相(连续的)。在其中一种模型中,低摩尔质量组分的分配通过使用简单方程式进行估算。第二个模型考虑了组件的质量传递,并使用Predici软件的相交换和k(s)-终止步骤构建。将模型预测与使用2,2-偶氮双(2-甲基丙腈)(AIBN)/ S-硫代苯甲酰基硫代乙醇酸/超临界二氧化碳的苯乙烯聚合实验数据进行比较。该模型很好地捕捉了RAFT剂的量对聚合速率和摩尔质量发展的影响。两种模型都可以计算系统中每个阶段存在的所有物质的浓度。将系统的性能与常规情况(在没有RAFT剂的情况下)进行比较。

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