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Studying the Fundamentals of Radical Polymerization Using ESR in Combination with Controlled Radical Polymerization Methods

机译:ESR与受控自由基聚合方法结合使用研究自由基聚合的基本原理

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Electron spin resonance (ESR) spectroscopy can contribute to understanding both the kinetics and mechanism of radical polymerizations. A series of oligo/poly(meth)acrylates were prepared by atom transfer radical polymerization (ATRP) and purified to provide well defined radical precursors. Model radicals, with given chain lengths, were generated by reaction of the terminal halogens with an organotin compound and the radicals were observed by ESR spectroscopy. This combination of ESR with ATRPs ability to prepare well defined radical precursors provided significant new information on the properties of radicals in radical polymerizations. ESR spectra of the model radicals generated from tert-butyl methacrylate precursors, with various chain lengths, showed clear chain length dependent changes and a possibility of differentiating between the chain lengths of observed propagating radicals by ESR. The ESR spectrum of each dimeric, trimeric, tetrameric, and pentameric tert-butyl acrylate model radicals, observed at various temperatures, provided clear experimental evidence of a 1,5-hydrogen shift.
机译:电子自旋共振(ESR)光谱有助于了解自由基聚合的动力学和机理。通过原子转移自由基聚合(ATRP)制备了一系列低聚/聚(甲基)丙烯酸酯,并进行了纯化,以提供定义明确的自由基前体。通过使末端卤素与有机锡化合物反应生成具有给定链长的模型自由基,并通过ESR光谱观察自由基。 ESR与ATRP制备明确定义的自由基前体的能力的这种结合为自由基聚合中自由基的性质提供了重要的新信息。由具有不同链长的甲基丙烯酸叔丁酯前体生成的模型自由基的ESR光谱显示出清晰的链长相关性变化,并可能通过ESR区分观察到的传播自由基的链长。在不同温度下观察到的每个二聚,三聚,四聚和五聚丙烯酸叔丁酯模型基团的ESR谱图均提供了1,5-氢转移的清晰实验证据。

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