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分析钯催化的(芳香族)C-H 键金属化-去质子化机制,涵盖芳烃的整个范围。

Analysis of the palladium-catalyzed (aromatic)C-H bond metalation-deprotonation mechanism spanning the entire spectrum of arenes.

机构信息

Department of Chemistry and Center for Catalysis Research and Innovation, University of Ottawa, 10 Marie Curie, Ottawa, ON, K1N 6N5 Canada.

出版信息

J Org Chem. 2012 Jan 6;77(1):658-68. doi: 10.1021/jo202342q. Epub 2011 Dec 20.

Abstract

A comprehensive understanding of the C-H bond cleavage step by the concerted metalation-deprotonation (CMD) pathway is important in further development of cross-coupling reactions using different catalysts. Distortion-interaction analysis of the C-H bond cleavage over a wide range of (hetero)aromatics has been performed in an attempt to quantify the various contributions to the CMD transition state (TS). The (hetero)aromatics evaluated were divided in different categories to allow an easier understanding of their reactivity and to quantify activation characteristics of different arene substituents. The CMD pathway to the C-H bond cleavage for different classes of arenes is also presented, including the formation of pre-CMD intermediates and the analysis of bonding interactions in TS structures. The effects of remote C2 substituents on the reactivity of thiophenes were evaluated computationally and were corroborated experimentally with competition studies. We show that nucleophilicity of thiophenes, evaluated by Hammett σ(p) parameters, correlates with each of the distortion-interaction parameters. In the final part of this manuscript, we set the initial equations that can assist in the development of predictive guidelines for the functionalization of C-H bonds catalyzed by transition metal catalysts.

摘要

全面了解协同金属化-去质子化(CMD)途径中的 C-H 键断裂步骤,对于使用不同催化剂进一步发展交叉偶联反应非常重要。本文通过扭曲相互作用分析,对各种(杂)芳烃的 C-H 键断裂进行了广泛的研究,试图量化 CMD 过渡态(TS)的各种贡献。评估的(杂)芳烃被分为不同的类别,以便于理解它们的反应性,并量化不同芳基取代基的活化特征。本文还介绍了不同芳烃类别的 CMD 途径到 C-H 键断裂,包括前 CMD 中间体的形成和 TS 结构中键相互作用的分析。通过计算和竞争研究实验,评估了远程 C2 取代基对噻吩反应性的影响。我们表明,通过哈米特 σ(p)参数评估的噻吩的亲核性与扭曲相互作用参数中的每一个都相关。在本文的最后部分,我们设定了初始方程,这些方程可以帮助开发过渡金属催化剂催化的 C-H 键功能化的预测指南。

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