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使用立体刚性二茂锆催化剂进行丙烯聚合时的异常温度效应

Unusual temperature effects in propene polymerization using stereorigid zirconocene catalysts.

作者信息

Jensen Vidar R, Graf Martin, Thiel Walter

机构信息

Department of Chemistry, University of Bergen, Allégaten 41, 5007 Bergen, Norway.

出版信息

Chemphyschem. 2005 Sep 5;6(9):1929-33. doi: 10.1002/cphc.200400581.

Abstract

Free Car-Parrinello molecular dynamics (CPMD) simulations of four diastereomers of the zirconium-propene complexes [{iPr(3-iPr-CpFlu)}ZriBu(C3H6)]+ (Cp=cyclopentadienyl; Flu=fluorenyl) provide valuable insight into the mechanism and stereocontrol of propene polymerization with stereorigid metallocenes. Spontaneous insertion of propene into the zirconium-isobutyl bond is not observed, and propene is found to be weakly bound and to rotate relatively freely around the C--C bond to be formed. Large-amplitude rotation of the isopropyl substituent around the Cp--iPr bond may play a role in triggering dissociation of propene. Three of the four diastereomers eliminate propene during the course of the simulations, which makes dissociation the dominating event on a 20-ps timescale. The CPMD simulations thus support the validity of the assumption, fundamental to statistical propagation models, that each insertion is independent of the preceding insertions. Using insertion barriers from static density functional calculations, the statistical model predicts the polypropene microstructure in good agreement with experiment at low polymerization temperatures for the catalysts {iPr(3-R-CpFlu)}ZrCl2 (R=H, iPr, tBu). The predictions become less accurate at higher temperatures, probably due to the onset of the competing back-skip reaction, which is not included in the model.

摘要

对锆 - 丙烯配合物[{iPr(3 - iPr - CpFlu)}ZriBu(C3H6)]⁺(Cp = 环戊二烯基;Flu = 芴基)的四种非对映异构体进行自由 Car - Parrinello 分子动力学(CPMD)模拟,为刚性茂金属催化丙烯聚合的机理和立体控制提供了有价值的见解。未观察到丙烯自发插入锆 - 异丁基键,发现丙烯结合较弱且围绕即将形成的 C - C 键相对自由地旋转。异丙基取代基围绕 Cp - iPr 键的大幅度旋转可能在引发丙烯解离中起作用。在模拟过程中,四种非对映异构体中的三种消除了丙烯,这使得在 20 皮秒的时间尺度上解离成为主导事件。因此,CPMD 模拟支持了统计增长模型所基于的假设的有效性,即每次插入都独立于先前的插入。利用静态密度泛函计算得到的插入势垒,统计模型预测了聚丙烯的微观结构,在低聚合温度下与催化剂{iPr(3 - R - CpFlu)}ZrCl2(R = H、iPr、tBu)的实验结果吻合良好。在较高温度下预测的准确性降低可能是由于竞争的反向跳跃反应开始,而该反应未包含在模型中。

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