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Monomer‐to‐water ratios as a tool in controlling emulsion copolymer composition: The methyl acrylate–indene system

机译:单体与水的比例作为控制乳液共聚物成分的工具:丙烯酸甲酯-茚体系

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AbstractA drifting copolymer composition as a function of conversion is an aspect typical of copolymerization. Reducing this so‐called composition drift in batch copolymerizations will lead to a decrease in chemical heterogeneity of the copolymers formed. For monomer systems in which the more water‐soluble monomer is also the more reactive one, theory predicts that composition drift in emulsion copolymerization can be reduced or even minimized by optimizing the monomer‐to‐water ratio. The monomer combination methyl acrylate–indene (MA–Ind) meets the requirements needed to minimize composition drift in batch emulsion copolymerization. Therefore, this monomer combination is chosen as a model monomer system in order to verify this theoretical prediction. Reactivity ratios needed for model predictions have been determined by low conversion bulk polymerization, resulting inrMA= 0.92 ± 0.16 andrInd= 0.086 ± 0.025. Furthermore, emulsion copolymerization reactions at the same monomer mole fraction are performed at different monomer to water ratios. From the good agreement between experiments and theoretical predictions for MA–Ind, it was concluded that control and even minimization of composition drift in batch emulsion copolymerization for monomer systems in which the more water‐soluble monomer is also the more reactive one is indeed possible by changing the initial monomer‐to‐water ratio of the reaction mixture provided that the reactivity ratios of both monomers are not too far from unity. © 199
机译:摘要漂移共聚物组合物与转化率的函数是共聚反应的典型特征。减少间歇共聚中这种所谓的成分漂移将导致所形成的共聚物的化学非均相性降低。对于水溶性较强的单体体系,反应性越强的单体体系,理论预测,通过优化单体与水的比例,可以减少甚至最小化乳液共聚中的成分漂移。单体组合丙烯酸甲酯-茚 (MA-Ind) 满足了在批量乳液共聚中最大限度地减少成分漂移所需的要求。因此,选择这种单体组合作为模型单体体系,以验证这一理论预测。模型预测所需的反应性比已通过低转化率本体聚合确定,结果是 inrMA= 0.92 ± 0.16 andrInd= 0.086 ± 0.025。此外,在相同的单体摩尔分数下,乳液共聚反应以不同的单体与水的比例进行。从实验结果和MA-Ind的理论预测中得出的结论是,在水溶性单体越多且反应性越强的单体体系中,通过改变反应混合物的初始单体与水的比例,确实可以控制甚至最小化单体共聚中的成分漂移,前提是两种单体的反应性比离统一性不太远。© 199

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