Dipartimento di Chimica, Materiali ed Ingegneria Chimica, Politecnico di Milano, Via Mancinelli 7, 20131 Milano, Italy.
J Phys Chem A. 2013 May 30;117(21):4358-66. doi: 10.1021/jp402025p. Epub 2013 May 21.
Recently, a growing amount of attention has been focused on the influence of secondary reactions on the free radical polymerization features and the properties and microstructure of the final polymer, particularly in the context of acrylate copolymers. One of the most challenging aspects of this research is the accurate determination of the corresponding reaction kinetics. In this paper, this problem is addressed using quantum chemistry. The reaction rate coefficients of various backbiting, propagation, and β-scission steps are estimated considering different chain configurations of a terpolymer system composed of methyl acrylate, styrene, and methyl methacrylate. The replacement of methyl acrylate radical units with styrene and methyl methacrylate globally decreases the backbiting probability and shifts the equilibrium toward the reactants, while the effect of replacing adjacent units is weaker and more dependent upon the specific substituting monomer. Propagation kinetics is affected primarily by the replacement of the radical units, while this effect appears to be particularly effective on midchain radical reactivity. The overall results clarify the different physicochemical behavior of chain-end, midchain, and short-branch radicals as a function of copolymer composition, providing new insights into free radical polymerization kinetics.
最近,人们越来越关注次级反应对自由基聚合特征以及最终聚合物的性能和微观结构的影响,特别是在丙烯酸酯共聚物的背景下。这项研究最具挑战性的方面之一是准确确定相应的反应动力学。在本文中,使用量子化学方法解决了这个问题。考虑到由甲基丙烯酸甲酯、苯乙烯和甲基丙烯酸甲酯组成的三元共聚物体系的不同链构型,估计了各种回咬、增长和β-断裂步骤的反应速率系数。用苯乙烯和甲基丙烯酸甲酯替代甲基丙烯酸甲酯自由基单元会全局降低回咬概率并使平衡向反应物移动,而替代相邻单元的影响较弱,并且更依赖于特定的取代单体。增长动力学主要受自由基单元的取代影响,而这种影响似乎对中链自由基反应性特别有效。总体结果阐明了链端、中链和短支链自由基的不同物理化学行为作为共聚物组成的函数,为自由基聚合动力学提供了新的见解。