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取代烯烃与 3-硝基吲哚的多组分 [4 + 2]/[3 + 2]环加成反应的选择性:DFT 分析。

Selectivities of multicomponent [4 + 2]/[3 + 2] cycloadditions of 3-nitroindole with substituted alkenes: a DFT analysis.

机构信息

Laboratoire de Chimie Théorique UMR 7616, UPMC Univ Paris 06, F-75005 Paris, France.

出版信息

J Org Chem. 2013 Sep 20;78(18):9233-42. doi: 10.1021/jo401482b. Epub 2013 Aug 30.

Abstract

The chemo-, regio-, and stereoselectivities of multicomponent [4 + 2]/[3 + 2] domino cycloaddition reactions involving nitroindole derivatives with vinylethers and acrylates are studied computationnally and compared to experimental results. In this process, the nitroarene first reacts as an electron-deficient heterodiene with the electron-rich alkene following an inverse electron-demand [4 + 2] process, leading to a nitronate intermediate in a fully selective way. This intermediate exclusively interacts, in a second step, with the electron-deficient alkene and undergoes a chemo- and regioselective [3 + 2] cycloaddition. The density functional theory calculations reported in this Article fully account for the selectivities observed experimentally. Electronic displacements along the reaction path are examined using a topological analysis of the electron-localization function (ELF). The first [4 + 2] reaction follows a classical concerted, although asynchronous process, which is reliably described by the frontier molecular-orbital (FMO) model. In contrast, the electronic displacements observed during the second [3 + 2] step are unexpected, involving an electron donation by the electron-deficient reaction partner.

摘要

本文通过计算研究了涉及硝基吲哚衍生物与乙烯基醚和丙烯酸盐的多组分[4+2]/[3+2] 串联环加成反应的化学选择性、区域选择性和立体选择性,并将计算结果与实验结果进行了比较。在该过程中,硝基芳烃首先作为缺电子杂二烯与富电子烯烃反应,遵循反电子需求[4+2] 过程,以完全选择性的方式生成硝酮中间体。该中间体在第二步中仅与缺电子烯烃相互作用,并经历化学选择性和区域选择性的[3+2] 环加成。本文报道的密度泛函理论计算充分说明了实验中观察到的选择性。通过电子定域函数(ELF)的拓扑分析检查了反应路径上的电子位移。第一个[4+2] 反应遵循经典的协同反应,尽管是异步过程,该过程可以通过前沿分子轨道(FMO)模型可靠地描述。相比之下,在第二步中观察到的电子位移是出乎意料的,涉及到缺电子反应伙伴的电子供体。

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