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Fast monomers: Factors affecting the inherent reactivity of acrylate monomers in photoinitiated acrylate polymerization [Review]

机译:快速单体:影响光引发丙烯酸酯聚合中丙烯酸酯单体固有反应性的因素[综述]

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摘要

A systematic study on the effect of molecular structure on the photoinitiated polymerization of acrylates was undertaken. Initially, the research was focused on the effect of hydrogen bonding, and it was found that preorganization via hydrogen bonding enhances the maximum rate of polymerization (R-p). This hydrogen bonding facilitated preorganization also affected the tacticity of the resultant polymer. Next, the effect of polarity as represented by the calculated dipole moment (mu(calc)) of a given monomer was investigated. A direct linear correlation between R-p and the calculated Boltzmann-averaged dipole moment (mu(calc)) was observed. The R-p-mu(calc) correlation holds for pure monomers, mixtures of monomers, and even mixtures of monomers with inert solvents. This correlation enables the rational design of monomers with a required reactivity. In addition, these studies suggest that the propagation step of polymerization is influenced by hydrogen bonding while the dipole moment influences the termination rate constant. These two mechanistic explanations can be regarded as complementary factors that influence the speed of acrylate polymerization. [References: 102]
机译:对分子结构对丙烯酸酯光引发聚合反应的影响进行了系统的研究。最初,研究的重点是氢键的作用,发现通过氢键进行的预组织可提高最大聚合速率(R-p)。这种氢键促成的预组织也影响了所得聚合物的立构规整度。接下来,研究了由给定单体的计算偶极矩(mu(calc))表示的极性影响。观察到R-p与计算的玻尔兹曼平均偶极矩(mu(calc))之间存在直接线性关系。 R-p-mu(calc)相关性适用于纯单体,单体混合物,甚至单体与惰性溶剂的混合物。这种相关性使得能够合理设计具有所需反应性的单体。另外,这些研究表明,聚合的传播步骤受氢键的影响,而偶极矩影响终止速率常数。可以将这两种机理解释视为影响丙烯酸酯聚合速度的互补因素。 [参考:102]

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