首页> 外文期刊>Journal of Applied Polymer Science >Degree of branching of hyperbranched polystyrenes via a controlled radical mechanism of an inimer: Determination by a kinetic approach
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Degree of branching of hyperbranched polystyrenes via a controlled radical mechanism of an inimer: Determination by a kinetic approach

机译:通过分子的自由基控制机制使超支化聚苯乙烯的支化度:通过动力学方法测定

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摘要

We studied, with a kinetic approach, the living nature and degree of branching (DB) of the formation of hyperbranched polystyrene by the free-radical photopolymerization of 2-(N,N-diethyldithiocarbamyl)methylstyrene in benzene. The free-radical polymerization proceeded with a living radical mechanism. Subsequently, we treated the kinetics of the initiation and propagation steps of the active A* and B* (side-group) sites with model compounds. The degradation rates of two types of dithiocarbamate groups at the A and B sites agreed well with theoretical trends for C-S bond dissociation energies predicted by the density functional theory for model compounds. The reactivity of the initiating B* groups was greater than that of the propagating A* groups. DB of the hyperbranched polymers was estimated to be 0.31 with both reaction rates in terms of Muller's equation. This result supported the DB value (0.39) estimated from NMR data. The hyperbranched molecules obtained in this work were not perfectly dendritic but had somewhat defective structures. (c) 2005 Wiley Periodicals, Inc.
机译:我们用动力学方法研究了2-(N,N-二乙基二硫代氨基甲酰基)甲基苯乙烯在苯中的自由基光聚合反应形成超支化聚苯乙烯的活性和支化度(DB)。自由基聚合以活性自由基机理进行。随后,我们用模型化合物处理了活性A *和B *(侧基)位点的引发和扩散步骤的动力学。 A和B位点上两种类型的二硫代氨基甲酸酯基团的降解速率与模型化合物的密度泛函理论所预测的C-S键离解能的理论趋势非常吻合。起始的B *基团的反应性大于传播的A *基团的反应性。根据穆勒方程,两种反应速率下的超支化聚合物的DB估计为0.31。该结果支持根据NMR数据估算的DB值(0.39)。在这项工作中获得的超支化分子不是完美的树枝状,但具有一些缺陷的结构。 (c)2005年Wiley Periodicals,Inc.

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