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Kinetics of the Aqueous-Phase Copolymerization of MAA and PEGMA Macromonomer: Influence of Monomer Concentration and Side Chain Length of PEGMA

机译:MAA和PEGMA大单体的水相共聚动力学:PEGMA的单体浓度和侧链长度的影响

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An in situ nuclear magnetic resonance spectroscopy (NMR) technique is used to monitor the aqueous-phase copolymerization kinetics of methacrylic acid (MAA) and poly(ethylene glycol) methyl ether methacrylate (PEGMA) macromonomers. In particular, the study analyses the effect of the number of ethylene glycol (EG) groups along the lateral chains of PEGMA and is carried out under fully ionized conditions of MAA at different initial monomer ratios and initial overall monomer concentrations (5–20 wt % in aqueous solution). The composition drift with conversion indicates that PEGMA macromonomer is more reactive than MAA. Individual monomer consumption rates show that the rates of consumption of both monomers are not first order with respect to overall concentration of the monomer. The reactivity ratios estimated from the copolymerization kinetics reveal, that for the short PEGMA, the reactivity ratios r MAA and r PEGMA increase with the solids content ( SC ). A totally different trend is obtained for the longer PEGMA, whose reactivity ratio ( r PEGMA 23 ) decreases with solids content, whereas the reactivity ratio of MAA remains roughly constant.
机译:原位核磁共振波谱(NMR)技术用于监测甲基丙烯酸(MAA)和聚(乙二醇)甲基醚甲基丙烯酸甲酯(PEGMA)大分子单体的水相共聚动力学。尤其是,该研究分析了沿PEGMA侧链的乙二醇(EG)数量的影响,并且是在MAA完全电离的条件下,以不同的初始单体比例和初始整体单体浓度(5-20​​ wt%在水溶液中)。随着转化的组成漂移表明PEGMA大分子单体比MAA更具反应性。各个单体的消耗速率表明,相对于单体的总浓度,两种单体的消耗速率都不是一阶的。由共聚动力学估计的反应率表明,对于短的PEGMA,反应率r MAA和r PEGMA随着固体含量(SC)的增加而增加。对于更长的PEGMA,获得了完全不同的趋势,其反应率(r PEGMA 23)随着固体含量的降低而降低,而MAA的反应率则保持大致恒定。

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