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首页> 外文期刊>Russian Journal of Coordination Chemistry >Activation Energy and Transition State Determination of the Olefin Insertion Process of Metallocene Catalysts Using a Semiempirical Molecular Orbital Calculation~1
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Activation Energy and Transition State Determination of the Olefin Insertion Process of Metallocene Catalysts Using a Semiempirical Molecular Orbital Calculation~1

机译:半经验分子轨道计算〜1确定茂金属催化剂烯烃插入过程的活化能和过渡态

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摘要

The transition state of the olefin insertion process of metallocene catalysts can be determined by adopting the semiempirical PM3 mode. In computational chemistry, the computational methods most employed are the ab initio method and density functional theory, which are very time consuming. The semiempirical molecular orbital method requires much less computational resources than the above methods. However, the accuracy and reliability of the semiempirical molecular orbital method remains to be determined. The PM3 model is the most recently developed the semiempirical molecular orbital method and can also be applied to transition metal calculations. Ths study is intended to investigated the reliability of computational results determined using semiempirical PM3 model on metallocene catalysts through comparison with published results on the density functional theory (DFT). The saddle point finding procedure is adopted to fine the transition state of the ethylene insertion process of metallocene catalysts. Results on the geometry and energy trends of the ethylene insertion process of metallocene catalysts determined using the PM3 model are in good agreement with the DET results. In addition, the saddle point of the potential energy surface of ethylene insertion is verified in accordance with the eigenvalue of the vibrational frequency spectrum. Correct eigenvalues indicate that the correct saddle point of the potential energy surface of ethylene insertion has been successfully located. Hence, the eigenvalue of the vibrational frequency spectrum is a valuable reference in terms of saddle point justification. Computational results and vibrational frequency spectrum analysis demonstrate that the PM3 model can be used to located the correct saddle point of the potential energy surface. The results obtained using the PM3 model confirm that the eigenvalue of the transition state lies nearly on the vibrational frequency spectrum. The eigenvalues are also analyed, providing a valuable reference for further studies of the transition state of olefin insertion of metallocene catalysts. The activation energies for the olefin insertion are also studied for evaluation of the catalyst.
机译:茂金属催化剂的烯烃插入过程的过渡态可以通过采用半经验的PM3模式来确定。在计算化学中,最常用的计算方法是从头算方法和密度泛函理论,这非常耗时。半经验分子轨道方法比上述方法需要更少的计算资源。但是,半经验分子轨道方法的准确性和可靠性仍有待确定。 PM3模型是最新开发的半经验分子轨道方法,也可用于过渡金属计算。通过与密度泛函理论(DFT)上已发表的结果进行比较,本研究旨在研究使用半经验PM3模型在茂金属催化剂上确定的计算结果的可靠性。采用鞍点发现程序来精炼茂金属催化剂的乙烯插入过程的过渡态。使用PM3模型确定的茂金属催化剂乙烯插入过程的几何形状和能量趋势的结果与DET结果非常吻合。另外,根据振动频谱的特征值来验证乙烯插入的势能表面的鞍点。正确的特征值表明已成功定位了乙烯插入的势能面的正确鞍点。因此,就鞍点调整而言,振动频谱的特征值是有价值的参考。计算结果和振动频谱分析表明,PM3模型可用于定位势能面的正确鞍点。使用PM3模型获得的结果证实,过渡态的特征值几乎位于振动频谱上。还分析了特征值,为进一步研究茂金属催化剂的烯烃插入过渡态提供了有价值的参考。还研究了烯烃插入的活化能以评估催化剂。

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