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首页> 外文期刊>International Journal of Quantum Chemistry >DFT study of the ligand effects on the regioselectivity of the insertion reaction of olefins in the complexes [HRh(CO)2(PR3)(L)] (R = H, F, Et, Ph, OEt, OPh, and L = propene, styrene)
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DFT study of the ligand effects on the regioselectivity of the insertion reaction of olefins in the complexes [HRh(CO)2(PR3)(L)] (R = H, F, Et, Ph, OEt, OPh, and L = propene, styrene)

机译:DFT研究配体对配合物[HRh(CO)2(PR3)(L)]中烯烃插入反应的区域选择性的影响(R = H,F,Et,Ph,OEt,OPh,L =丙烯,苯乙烯)

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摘要

In this work, we have applied Density Functional Theory calculations to investigate the electronic and spacial effects of different phosphorus ligands on the selectivity of the olefin (propene and styrene) insertion reaction into the Rh-H bond of the complexes HRh(PR3)(CO)2(olefin), where the modified ligand PR3, is a phosphine (R = H, F, Et, Ph) or phosphite (R = OEt, OPh). M06/SBKJC/cc-pVDZ calculations revealed that the olefin coordination and insertion reaction are dominated by the electronic effects of the phosphorus ligands. A very good correlation between the Tolman electronic factor, χ, with the backdonated charges from the metallic center to the olefin and also with the interaction energy of the olefin with the four-coordinated HRh(CO)2(PR3) catalyst was found. Using the propene as the substrate and for all the phosphorus ligands investigated, the insertion always proceeds through the reaction path leading to the linear metal-alkyl intermediate. However, when styrene is used, the branched metal-alkyl intermediate is always favored. The structural results obtained for the transition states do not support the existence of a π-allilic intermediates. The regioselectivity obtained for the insertion reaction of styrene results from thermodynamic aspects of the reaction in which the branched metal-alkyl intermediate is always favored by ~5 kcal/mol. The M06/SBKJC/cc-pVDZ results are in good agreement with the experimental findings.
机译:在这项工作中,我们已应用密度泛函理论计算来研究不同磷配体对烯烃(丙烯和苯乙烯)插入配合物HRh(PR3)(CO)Rh-H键的选择性的电子和空间效应)2(烯烃),其中修饰的配体PR3是膦(R = H,F,Et,Ph)或亚磷酸酯(R = OEt,OPh)。 M06 / SBKJC / cc-pVDZ计算表明,烯烃配位和插入反应受磷配体的电子作用支配。发现托尔曼电子因子χ与从金属中心到烯烃的背电荷以及烯烃与四配位HRh(CO)2(PR3)催化剂的相互作用能之间具有很好的相关性。使用丙烯作为底物,对于所研究的所有磷配体,插入总是通过反应路径进行,最终导致线性金属-烷基中间体。但是,当使用苯乙烯时,支链金属-烷基中间体始终是优选的。对于过渡态获得的结构结果不支持存在π-烯丙基中间体。苯乙烯插入反应获得的区域选择性是由反应的热力学方面决定的,在该反应中,支链金属烷基中间体始终偏向〜5 kcal / mol。 M06 / SBKJC / cc-pVDZ结果与实验结果非常吻合。

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