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Termination kinetics in free-radical bulk copolymerization: The systems dodecyl acrylate-dodecyl methacrylate and dodecyl acrylate-methyl acrylate

机译:自由基本体共聚中的终止动力学:丙烯酸十二烷基酯-甲基丙烯酸十二烷基酯和丙烯酸十二烷基酯-丙烯酸甲酯的体系

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The termination kinetics in free-radical bulk copolymerization of the dodecyl acrylate (DA)-dodecyl methacrylate (DMA) and DA-methyl acrylate (MA) systems has been studied by exclusively applying laser-assisted techniques. The ratio of termination to propagation rate coefficients, kt/kp, is measured by the SP-PLP technique, and kp is deduced from PLP-SEC. kt is determined up to fairly large degrees of overall monomer conversion, at least up to 40%. The discussion of the present paper focuses on the initial plateau region of constant kt, which extends up to about 15% in MA homopolymerizations and up to 70% in DA homopolymerizations. Among the existing models for copolymerization kt, the treatment that considers penultimate units and uses the geometric mean approximation to estimate cress-termination turns out to be excellently applicable. It is particularly noteworthy that plotting log kt vs monomer mole fraction (fi) yields a linear correlation for each of the two copolymerization systems. The excellent fit of kt,copo by the penultimate unit model provides some evidence that steric effects significantly contribute to termination rate control in (meth)acrylate free-radical polymerization at low and moderate degrees of monomer conversion. The entire set of experiments has been carried out at high pressure (1000 bar, 40 °C) where the signal-to-noise ratio of the SP-PLP experiments is very satisfactory. No reason is seen why the conclusions derived from these measurements should not be valid at other reaction conditions including ambient pressure.
机译:丙烯酸十二烷基酯(DA)-甲基丙烯酸十二烷基酯(DMA)和DA-丙烯酸甲酯(MA)体系在自由基本体共聚中的终止动力学已通过专门应用激光辅助技术进行了研究。终止系数与传播速率系数的比率kt / kp通过SP-PLP技术测量,而kp从PLP-SEC推导得出。 kt的确定是在相当高的总单体转化率下进行的,至少达到40%。本文的讨论集中在常数kt的初始平稳区域,该区域在MA均聚反应中扩展至约15%,在DA均聚反应中扩展至70%。在现有的共聚kt模型中,考虑倒数第二个单元并使用几何平均近似来估计水芹终止的处理非常适用。尤其值得注意的是,绘制log kt对单体摩尔分数(fi)的曲线对于两个共聚体系中的每一个都产生线性关系。倒数第二个单元模型对kt,copo的出色拟合提供了一些证据,表明空间效应显着有助于控制低和中度单体转化率的(甲基)丙烯酸酯自由基聚合的终止速率。整套实验是在高压(1000 bar,40°C)下进行的,其中SP-PLP实验的信噪比非常令人满意。没有理由看不到这些测量得出的结论在包括环境压力在内的其他反应条件下不成立的原因。

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