首页> 外文期刊>Journal of the American Chemical Society >ZIEGLER-NATTA ETHYLENE INSERTION REACTION FOR A FIVE-COORDINATE TITANIUM CHLORIDE COMPLEX BRIDGED TO AN ALUMINUM HYDRIDE COCATALYST
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ZIEGLER-NATTA ETHYLENE INSERTION REACTION FOR A FIVE-COORDINATE TITANIUM CHLORIDE COMPLEX BRIDGED TO AN ALUMINUM HYDRIDE COCATALYST

机译:ZIEGLER-NATTA乙烯嵌入桥联氢氧化铝催化剂的五配位氯化钛配合物

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The Ziegler-Natta ethylene insertion into the metal-methyl bond in the neutral, bimetallic compound AlH2(mu-Cl)(2)TiCl2(CH3) has been studied with reaction path calculations and gradient geometry optimizations. No symmetry constraints have been imposed. The reaction path calculations and the geometry optimizations have been performed at the SCF level of theory using extended atomic basis sets. Correlation effects of all valence electrons have been included at the important stationary points on the potential energy surface (PES). A cut through the PES along the reaction path from the pi complex to the propyl product for the direct insertion mechanism is presented in detail, as well as equilibrium structures of reactants and the transition state of ethylene pi coordination. The system is seen to prefer geometries of C-s symmetry, and only departs from symmetry on short sections along the reaction path in order to relieve strain through rotations of the polymer chain. At the correlated level, the PES is almost flat along the reaction path until the transition state of ethylene insertion as determined at the SCF level of accuracy. Beyond this point, the energy decreases along the reaction path, resulting in an overall reaction enthalpy of 21.9 kcal/mol. The two bridging chlorides are found to behave dynamically, with an interchange in the bond distance asymmetry from the reactant to the product taking place synchronously with a polymer chain flipping due to the migratory insertion. [References: 71]
机译:齐格勒-纳塔乙烯插入中性,双金属化合物AlH2(mu-Cl)(2)TiCl2(CH3)中的金属甲基键已进行了反应路径计算和梯度几何优化。没有施加对称约束。反应路径计算和几何优化已在理论的SCF级别使用扩展的原子基础集进行了。所有价电子的相关效应已包含在势能表面(PES)上的重要固定点上。详细介绍了从pi络合物到丙基产物的反应路径中贯穿PES的直接插入机理,以及反应物的平衡结构和乙烯pi配位的过渡态。看到该系统更喜欢C-s对称的几何形状,并且仅在沿着反应路径的短截面上偏离对称,以便通过聚合物链的旋转来减轻应变。在相关水平,PES沿反应路径几乎平坦,直到以SCF精度水平确定的乙烯插入的过渡态为止。超过这一点,能量沿反应路径减少,导致总反应焓为21.9 kcal / mol。发现这两种桥连氯化物是动态的,从反应物到产物的键距不对称性的交换与由于迁移插入引起的聚合物链翻转同步发生。 [参考:71]

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