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分子动力学模拟光诱导自由基聚合。

Molecular Dynamics Simulations of Photo-Induced Free Radical Polymerization.

机构信息

Department of Manufacturing and Industrial Engineering, The Pennsylvania State University, University Park, Pennsylvania 16801, United States.

出版信息

J Chem Inf Model. 2020 Dec 28;60(12):6314-6327. doi: 10.1021/acs.jcim.0c01156. Epub 2020 Dec 1.

Abstract

Curing kinetic models provide insight into how design parameters affect the kinetics of photopolymerization. However, they do not provide insight into how networks form or how they influence the process. This article describes a molecular dynamics simulation framework for simulating photoinitiated, chain growth, free radical polymerization. The framework was applied to simulate the photo-induced polymerization of bisphenol A (EO)10 diacrylate under varying conditions of curing light intensity and photoinitiator concentration. Results from the simulations agree very well with curing kinetic curves and gelation points derived from experiments. The simulations also reveal that: (1) gelation is highly correlated with the formation of giant molecules, (2) differences in the number of free radicals generated at the beginning of polymerization significantly affect polymer network formation at low to intermediate conversion, and thus affect the gelation point, and (3) increasing light intensity or photoinitiator concentration tends to delay the gelation point, but does not affect the ultimate polymer network structure near the latter stages of photopolymerization.

摘要

固化动力学模型提供了深入了解设计参数如何影响光聚合动力学的方法。然而,它们并不能提供有关网络形成方式或它们如何影响该过程的信息。本文描述了一种用于模拟光引发的、链增长的、自由基聚合的分子动力学模拟框架。该框架被应用于模拟在不同的固化光强度和光引发剂浓度条件下双酚 A(EO)10 二丙烯酸酯的光诱导聚合。模拟结果与实验得出的固化动力学曲线和凝胶点非常吻合。模拟还揭示了:(1)凝胶化与大分子的形成高度相关,(2)聚合开始时生成的自由基数量的差异在低至中等转化率下显著影响聚合物网络的形成,从而影响凝胶点,(3)增加光强度或光引发剂浓度往往会延迟凝胶点,但不会影响光聚合后期阶段的最终聚合物网络结构。

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