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Reaction mechanism and stereoselectivity of ruthenium - Porphyrin-catalyzed intramolecular amidation of sulfamate ester: A DFT computational study

机译:钌-卟啉催化的氨基磺酸氨基磺酸酯化反应的机理和立体选择性:DFT计算研究

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[GRAPHICS] The reaction mechanism of the ruthenium-porhyrin complex [Ru(por)(CO)]-catalyzed intramolecular C-H bond amidation was examined using density functional theory (DFT) calculations. The metal-nitrene reactive intermediate, Ru(por)(CO)-NSO3R1 (R-1 = 1-methylclohexl-methyl) was found to be highly favorable to generate in terms of the free energy profile from the reaction of the starting materials. Ru(por)(CO)-NSO3R1 may exist in both singlet and triplet states since they are close in energy. In each state, six C-H bond amidation reaction pathways were characterized structurally and energetically. The predicted most probable diastereomeric product out of the four possible diasteromeric products examined in the calculations for the amidation reactions agree well with previously reported experimental results.
机译:[图形]使用密度泛函理论(DFT)计算,研究了钌-卟啉配合物[Ru(por)(CO)]催化的分子内C-H键酰胺化反应的机理。发现金属-氮化物反应性中间体Ru(por)(CO)-NSO 3 R 1(R-1 = 1-甲基氯己基-甲基)就由原料反应产生的自由能分布而言是非常有利的。 Ru(por)(CO)-NSO3R1可能以单重态和三重态存在,因为它们的能量接近。在每种状态下,通过结构和能量表征了六个C-H键酰胺化反应途径。在酰胺化反应的计算中检查的四种可能的非对映异构产物中,预测的最可能的非对映异构产物与先前报道的实验结果非常吻合。

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