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Metallocene-catalyzed propene polymerization: From microstructure to kinetics. 1. C-2-symmetric ansa-metallocenes and the 'trigger' hypothesis

机译:茂金属催化的丙烯聚合:从微观结构到动力学。 1. C-2-对称的ansa-茂金属和“触发”假设

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摘要

A microstructural method for the determination of the reaction order with respect to the monomer in coordinated 1-alkene polymerizations is proposed. The method is applicable whenever enantioselective monomer polyinsertion competes with an intramolecular process introducing stereodefects of known and recognizable nature in the growing polymer chains at a rate independent of monomer concentration, [M] (e.g., chain or site epimerization for C-2-symmetric and C-s-symmetric ansa-metallocene catalysts, respectively). Indeed, in such cases, the stereoregularity of the polymer obtained at a given temperature results from the balance between the rates of the two competing processes, and is obviously a function of [M] because so is the rate of polyinsertion, . Therefore, from the way polymer stereoregularity changes with [M], the corresponding change of can be inferred. Compared with the conventional macroscopic approach based on measurements of monomer consumption, the microstructural route is more reproducible, and allows one to discriminate between "authentic" and apparent higher-order polyinsertion rate laws. In this paper, in particular, we show that the "trigger" hypothesis invoked to explain the observed pseudo-second-order kinetics of propene polymerization promoted by C-2-symmetric ansa-metallocene catalysts is inconsistent with the experimental results and that an alternative explanation assuming first-order kinetics at catalytic species which interconvert between a propagating and a "resting" state is more plausible. [References: 45]
机译:提出了一种用于确定配位1-烯烃聚合反应中与单体反应顺序的微结构方法。每当对映选择性单体多插入与分子内过程竞争,从而以不依赖单体浓度[M]的速率在生长的聚合物链中引入已知和可识别性质的立体缺陷时(例如,对于C-2-对称和分别为Cs对称的ansa-茂金属催化剂)。实际上,在这种情况下,在给定温度下获得的聚合物的立构规整度是由两个竞争过程的速率之间的平衡引起的,并且显然是[M]的函数,因为多插入速率。因此,从聚合物立构规整度随[M]变化的方式,可以推断出的相应变化。与基于单体消耗量测量的常规宏观方法相比,微结构路线更可重现,并且可以区分“真实的”和明显的高阶多插入率定律。特别是,在本文中,我们表明“触发”假设被用来解释由C-2-对称的ansa-茂金属催化剂促进的丙烯聚合所观察到的拟二级动力学,与实验结果不一致,并且存在另一种选择假设在催化态中在传播状态和“静止”状态之间相互转换的一级动力学的解释更为合理。 [参考:45]

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