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Ultra-precise insertion of functional monomers in chain-growth polymerizations

机译:链增长聚合中功能单体的超精确插入

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摘要

Chain-growth polymerizations are popular methods because they allow synthesis of high-molecular weight polymers in high yields and in short times. However, copolymers prepared by such processes generally exhibit uncontrolled monomer sequences. The controlled radical copolymerization of styrene with N-substituted maleimides is an interesting exception allowing preparation of controlled primary structures. However, because of the statistical nature of chain-growth mechanisms, sequence deviations are still present in these copolymers. Here we describe a specific range of experimental conditions that allows ultra-precise incorporation of a single N-substituted maleimide unit in a polystyrene chain. This occurs in a given kinetic regime where the styrene/N-substituted maleimide comonomer ratio is very low. This situation usually only arises in the later stages of a chain-growth polymerization. Nevertheless, we show that it is possible to restore these particular kinetic conditions multiple times during a single polymerization by using successive feeds of donor and acceptor comonomers.
机译:链增长聚合是流行的方法,因为它们允许以高收率和短时间合成高分子量聚合物。然而,通过这种方法制备的共聚物通常表现出不受控制的单体序列。苯乙烯与N-取代的马来酰亚胺的受控自由基共聚是一个有趣的例外,允许制备受控的一级结构。但是,由于链增长机理的统计性质,这些共聚物中仍然存在序列偏差。在这里,我们描述了一个特定的实验条件范围,该条件允许在聚苯乙烯链中超精密地掺入单个N-取代的马来酰亚胺单元。这在给定的动力学方案中发生,其中苯乙烯/ N-取代的马来酰亚胺共聚单体比率非常低。通常仅在链增长聚合反应的后期出现这种情况。然而,我们表明通过使用连续的供体和受体共聚单体进料,可以在单个聚合过程中多次恢复这些特定的动力学条件。

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