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The effect of substituents on dimer formation and cation-anion interaction in silicon bridged bisindenyl zirconocene propylene polymerization catalysts

机译:取代基对硅桥联双茚基锆茂丙烯聚合催化剂中二聚体形成和阳离子-阴离子相互作用的影响

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摘要

The dimerization and ion-pair formation enthalpies of advanced silicon bridged bisindenyl zirconocenes have been estimated at the density functional (DFT) level of theory. According to our calculations (based on molecular mechanics geometry optimization with subsequent DFT geometry relaxation), a properly designed bisindenyl ligand sphere helps to avoid catalyst dimerization and reduced coordination of methylaluminoxane (MAO) anions to cationic sites. Interestingly, we also found a correlation between the dipole moment of the active species considered here and their catalytic performance. These results suggest that an appropriate substituent pattern favours complexation of propylene monomers as the dominant mechanism to stabilize electron deficient active sites due to a diminution of particular intermolecular forces which yield catalytically inactive resting states.
机译:已在理论的密度泛函(DFT)水平上估计了高级硅桥联双茚基锆茂的二聚化和离子对形成焓。根据我们的计算(基于分子力学几何优化和随后的DFT几何弛豫),正确设计的双茚基配体球有助于避免催化剂二聚化并减少甲基铝氧烷(MAO)阴离子与阳离子位点的配位。有趣的是,我们还发现了此处考虑的活性物质的偶极矩与它们的催化性能之间的相关性。这些结果表明,适当的取代基模式有利于丙烯单体的络合,因为稳定特定的分子间力会减小产生催化惰性的静止状态,因此主要的机制是稳定电子不足的活性位。

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