首页> 外文期刊>Journal of the American Chemical Society >Mechanistic Detail Revealed via Comprehensive Kinetic Modeling of [rac-C2H4(1-indenyl)2ZrMe2]-Catalyzed 1-Hexene Polymerization
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Mechanistic Detail Revealed via Comprehensive Kinetic Modeling of [rac-C2H4(1-indenyl)2ZrMe2]-Catalyzed 1-Hexene Polymerization

机译:通过[rac-C2H4(1-茚基)2ZrMe2]催化的1-己烯聚合反应的综合动力学模型揭示了机理细节

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摘要

Thorough kinetic characterization of single-site olefin polymerization catalysis requires comprehensive, quantitative kinetic modeling of a rich multiresponse data set that includes monomer consumption, molecular weight distributions (MWDs), end group analysis, etc. at various conditions. Herein we report the results obtained via a comprehensive, quantitative kinetic modeling of all chemical species in the batch polymerization of 1-hexene by rac-C2H4(1-Ind)2ZrMe2 activated with B(C6F5)3. While extensive studies have been published on this catalyst system, the previously acknowledged kinetic mechanism is unable to predict the MWD. We now show it is possible to predict the entire multiresponse data set (including the MWDs) using a kinetic model featuring a catalytic event that renders 43% of the catalyst inactive for the duration of the polymerization. This finding has significant implications regarding the behavior of the catalyst and the polymer produced and is potentially relevant to other single-site polymerization catalysts, where it would have been undetected as a result of incomplete kinetic modeling. In addition, comprehensive kinetic modeling of multiresponse data yields robust values of rate constants (uncertainties of less than 16% for this catalyst) for future use in developing predictive structure−activity relationships.
机译:单中心烯烃聚合催化的全面动力学表征需要丰富的多响应数据集的全面,定量动力学模型,该数据集包括各种条件下的单体消耗,分子量分布(MWD),端基分析等。本文中,我们报告了通过对由己二酸(C6F5)3活化的rac-C2H4(1-Ind)2ZrMe2进行的1-己烯间歇聚合中的所有化学物种进行的全面定量动力学建模而得出的结果。尽管已对该催化剂体系进行了广泛的研究,但先前公认的动力学机制无法预测MWD。现在我们表明,使用动力学模型来预测整个多响应数据集(包括MWD)是可能的,该动力学模型的特征在于催化事件,使聚合过程中43%的催化剂失活。该发现对催化剂和所生产的聚合物的行为具有重要意义,并且可能与其他单中心聚合催化剂有关,因为不完整的动力学模型可能无法检测到它。此外,多响应数据的综合动力学建模可得出速率常数的可靠值(该催化剂的不确定度小于16%),可用于未来发展预测性结构-活性关系。

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