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金属卟啉催化剂对饱和 C-H 键的选择性功能化。

Selective functionalisation of saturated C-H bonds with metalloporphyrin catalysts.

机构信息

Department of Chemistry, Open Laboratory of Chemical Biology of the Institute of Molecular Technology for Drug Discovery and Synthesis, The University of Hong Kong, Hong Kong.

出版信息

Chem Soc Rev. 2011 Apr;40(4):1950-75. doi: 10.1039/c0cs00142b. Epub 2011 Mar 9.

Abstract

The recent surge of interest in metal-catalysed C-H bond functionalisation reactions reflects the importance of such reactions in biomimetic studies and organic synthesis. This critical review focuses on metalloporphyrin-catalysed saturated C-H bond functionalisation reported since the year 2000, including C-O, C-N and C-C bond formation via hydroxylation, amination and carbenoid insertion, respectively, together with a brief description of previous achievements in this area. Among the metalloporphyrin-catalysed reactions highlighted herein are the hydroxylation of steroids, cycloalkanes and benzylic hydrocarbons; intermolecular amination of steroids, cycloalkanes and benzylic or allylic hydrocarbons; intramolecular amination of sulfamate esters and organic azides; intermolecular carbenoid insertion into benzylic, allylic or alkane C-H bonds; and intramolecular carbenoid C-H insertion of tosylhydrazones. These metalloporphyrin-catalysed saturated C-H bond functionalisation reactions feature high regio-, diastereo- or enantioselectivity and/or high product turnover numbers. Mechanistic studies suggest the involvement of metal-oxo, -imido (or nitrene), and -carbene porphyrin complexes in the reactions. The reactivity of such metal-ligand multiple bonded species towards saturated C-H bonds, including mechanistic studies through both experimental and theoretical means, is also discussed (244 references).

摘要

近年来,人们对金属催化的 C-H 键功能化反应产生了浓厚的兴趣,这反映了这些反应在仿生研究和有机合成中的重要性。本篇综述重点关注了自 2000 年以来报道的金属卟啉催化的饱和 C-H 键功能化反应,包括通过羟化、氨化和碳烯插入分别形成 C-O、C-N 和 C-C 键,以及对该领域先前成就的简要描述。本文强调的金属卟啉催化反应包括类固醇、环烷烃和苄基烃的羟化;类固醇、环烷烃和苄基或烯丙基烃的分子间氨化;磺酰胺酯和有机叠氮化物的分子内氨化;苄基、烯丙基或链烷烃 C-H 键的分子间碳烯插入;以及对甲苯磺酰腙的分子内碳烯 C-H 插入。这些金属卟啉催化的饱和 C-H 键功能化反应具有高区域、非对映或对映选择性和/或高产物周转率。机理研究表明,反应涉及金属-氧、-亚胺(或氮烯)和-碳烯卟啉配合物。还讨论了这些金属-配体多重键物种对饱和 C-H 键的反应性,包括通过实验和理论手段进行的机理研究(244 篇参考文献)。

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