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首页> 外文期刊>Macromolecules >Chain length dependence of radical-radical termination in free radical polymerization: A pulsed laser photolysis investigation
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Chain length dependence of radical-radical termination in free radical polymerization: A pulsed laser photolysis investigation

机译:自由基聚合中自由基自由基终止的链长依赖性:脉冲激光光解研究

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摘要

A new method for analyzing the chain length dependence of termination rate coefficients (k(t)(i,j) where i and j are the chain lengths of the reacting radicals) in low conversion free radical polymerizations is described. The method involves comparing experimental molecular weight distributions of polymers formed in pulsed laser photolysis experiments with those predicted by kinetic simulation. The method is enabled by direct measurements of the concentration of radicals generated per laser pulse. Knowledge of the radical concentrations should mean that the only unknowns in the simulations are the termination rate coefficients. The analysis demonstrates the need for chain length dependent termination rate constants in describing polymerization kinetics. Polymerization kinetics were analyzed in terms of two models which purport to describe the functional form of k(t)(i,j). Use of a Smoluchowski model for k(t)(i,j), in conjunction with independently measured monomer diffusion coefficients, provides molecular weight distributions that closely match those obtained experimentally. However, the finding that reasonable fits can also be obtained using a geometric mean model to describe k(t)(i,j) indicates molecular weight distributions alone do not contain sufficient information for unambiguous model discrimination. [References: 63]
机译:描述了一种分析低转化率自由基聚合中终止速率系数(k(t)(i,j),其中i和j是反应自由基的链长)的链长依赖性的新方法。该方法涉及将在脉冲激光光解实验中形成的聚合物的实验分子量分布与通过动力学模拟预测的分布进行比较。通过直接测量每个激光脉冲产生的自由基的浓度可以启用该方法。自由基浓度的知识应该意味着模拟中唯一未知的是终止速率系数。分析表明在描述聚合动力学时需要链长相关的终止速率常数。根据两个模型来分析聚合动力学,这两个模型旨在描述k(t)(i,j)的功能形式。将Smoluchowski模型用于k(t)(i,j),结合独立测量的单体扩散系数,可提供与实验获得的分子量分布非常匹配的分子量分布。但是,也可以使用几何均值模型来描述k(t)(i,j)来获得合理拟合的发现,这表明仅分子量分布并不包含足够的信息来进行明确的模型判别。 [参考:63]

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