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首页> 外文期刊>International Journal of Quantum Chemistry >Insertion reaction of propane into Rh-H bond in HRh(CO)(PH3)(2)(C3H6) compound: A density functional study
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Insertion reaction of propane into Rh-H bond in HRh(CO)(PH3)(2)(C3H6) compound: A density functional study

机译:丙烷插入HRh(CO)(PH3)(2)(C3H6)化合物Rh-H键的反应:密度泛函研究

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摘要

Quantum mechanical calculations at the MP4 (SDQ) level using the BP86-optimized geometries were carried out to investigate the energies and reaction mechanism for the propene (CH3-(CH)-H-1=CH22) insertion reaction into the Rh-H bond, using the cis-HRh(CO)(PH3)(2) compound as a model catalytic species. Since the reaction may occur on the branched carbon 1 or in the normal carbon 2, which leads to branched and normal Rh(alkyl) compounds, respectively, we investigated these two mechanisms. The results show that the insertion in the branched carbon has an activation energy of 16.2 kcal/mol, and the activation energy for the reaction to take place at the normal carbon is 14.3 kcal/mol. These activation energies, together with the calculated relative energy of the metal-alkyl compounds formed after the insertion considering these two pathways, were used to access the regioselectivity on this reaction. We found a ratio of normal- and iso-products, n:iso, of (96:4), which is in excellent agreement with the experimental regioselectity of (95:5). (C) 2000 John Wiley & Sons, Inc. [References: 38]
机译:使用BP86优化的几何结构在MP4(SDQ)级别进行了量子力学计算,以研究丙烯(CH3-(CH)-H-1 = CH22)插入Rh-H键的能量和反应机理,使用顺式HRh(CO)(PH3)(2)化合物作为模型催化物质。由于反应可能发生在支链碳1或正常碳2上,分别导致支链和正常Rh(烷基)化合物,因此我们研究了这两种机理。结果表明,在支链碳中的插入具有16.2kcal / mol的活化能,并且在正常碳处发生反应的活化能为14.3kcal / mol。考虑到这两个途径,将这些活化能以及在插入之后形成的金属-烷基化合物的计算出的相对能量一起用于获得该反应的区域选择性。我们发现正态和异构产物的比率n:iso为(96:4),与实验区域选择性(95:5)非常吻合。 (C)2000 John Wiley&Sons,Inc. [参考:38]

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