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Theoretical investigation on the mechanism of the CuI-catalyzed carbon-nitrogen coupling reaction of 2-iodo-selenophene with benzamide

机译:CuI催化2-碘硒醚与苯甲酰胺碳氮偶联反应机理的理论研究

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摘要

The mechanism of the carbon-nitrogen coupling reaction of 2-iodo-selenophene with benzamide catalyzed by CuI has been investigated with density functional theory at the GGA/PW91/DND and GGA/PBE/DNP levels. The geometric configurations of the reactants, intermediates, transition states, and products were optimized and verified by means of vibration frequency calculations. A four-step mechanism was proposed for the reaction. The first step was the rate-control step. Two possible pathways in the fourth step were investigated, and the main pathway was identified by comparing their activation and dissociation energies. For comparison, the same calculations were performed to the reaction without the CuI activator. The activation barrier with CuI is 76 kJ mol(-1) smaller than that without CuI. It turns out that CuI can promote the reaction by lowering the activation energy. Our calculations reveal the crucial role of CuI in the reaction and agree well with experimental findings.
机译:在GGA / PW91 / DND和GGA / PBE / DNP水平上,用密度泛函理论研究了CuI催化2-碘硒烯与苯甲酰胺的碳氮偶联反应机理。通过振动频率计算优化和验证了反应物,中间体,过渡态和产物的几何构型。提出了四步反应机理。第一步是速率控制步骤。研究了第四步中的两个可能途径,并通过比较它们的活化能和离解能来确定主要途径。为了比较,对没有CuI活化剂的反应进行了相同的计算。具有CuI的激活势垒比没有CuI的激活势垒小76 kJ mol(-1)。事实证明,CuI可以通过降低活化能来促进反应。我们的计算揭示了CuI在反应中的关键作用,并与实验结果很好地吻合。

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