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Ab initio based kinetic Monte Carlo analysis to unravel the propagation kinetics in vinyl acetate pulsed laser polymerization

机译:基于从头算的动力学蒙特卡罗分析揭示了乙酸乙烯酯脉冲激光聚合中的传播动力学

摘要

The radical propagation kinetics of vinyl acetate (VAc) in pulsed laser polymerization (PLP) is studied by combining ab initio calculated rate coefficients for propagation of head, tail and mid-chain radicals, and backbiting reactions with kinetic Monte Carlo modeling of PLP spectra. The intriguing laser pulse frequency dependency of the propagation kinetics is shown to be mainly caused by the formation of stabilized mid-chain radicals via backbiting of tail radicals, originating from head-to-head propagation. These mid-chain radicals are approximately 35 times less reactive towards propagation at 323 K which, in agreement with experimental observations, results in a 15% increase of the observed propagation rate coefficient if the laser pulse frequency is increased from low (25–100 s−1) to high (300–500 s−1) values. Under typical PLP conditions, only tail radicals are reactive towards backbiting while this reaction is energeticallyunfavorable for head radicals. Tail-to-tail propagation of the radicals formed by head-to-head propagation is not sufficiently slow to fully explain the observed frequency dependence. The effect of chain length dependent propagation remains limited but can no longer be neglected at frequencies above 500 s−1.
机译:醋酸乙烯酯(VAc)在脉冲激光聚合(PLP)中的自由基传播动力学是通过将头,尾和中链自由基的传播从头算出的速率系数与PLP光谱的动力学Monte Carlo建模相结合来研究的。有趣的是,与传播动力学有关的激光脉冲频率依赖性主要是由稳定的中链自由基经头自由基的反向咬合引起的尾部自由基的形成引起的。这些中链自由基在323 K时对传播的反应性大约低35倍,这与实验观察一致,如果激光脉冲频率从低(25-100 s)增加,则观察到的传播速率系数增加15%。 -1)到高(300-500 s-1)值。在典型的PLP条件下,只有尾部自由基对咬合具有反应性,而该反应在能量上不利于头部自由基。由头对头传播形成的自由基的尾到尾传播还不够慢,不足以完全解释所观察到的频率依赖性。链长相关传播的影响仍然有限,但在500 s-1以上的频率下不能再忽略了。

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