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Cationic Iridium-Catalyzed Synthesis Initiated by the Cleavage of C-H, N-H, and C-O Bonds

机译:阳离子铱催化的C-H,N-H和C-O键断裂引发的合成

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摘要

The direct functionalization of inactive bonds is an ideal transformation in organic synthesis because the introduction of activating groups, such as halogens and metals, to substrates is unnecessary and by-products derived from them are not formed. This report describes several types of cationic iridium-catalyzed reactions that occur through C-H, N-H, or C-O bond cleavage. The carbonyl-directed sp~2 C-H bond activation of aryl ketones realized new approaches to benzofulvene, benzofuran and indole synthesis, as well as the C2-position-selective alkylation of N-acyl-protected indoles. The enantioselective sp~3 C-H alkylation of 2-(alkylamino)pyridines and the intermolecular enantioselective hydroamination of heteroaromatic amines gave various chiral amines. O-to-N-alkyl migration in 2-alkoxypyridines gave N-alkylpyridones via C-O bond cleavage.
机译:无活性键的直接官能化是有机合成中的理想转变,因为不需要将活化基团(例如卤素和金属)引入基质中,并且不会形成衍生自它们的副产物。该报告描述了通过C-H,N-H或C-O键断裂发生的几种类型的阳离子铱催化的反应。芳基酮的羰基定向sp〜2 C-H键活化实现了苯并富勒烯,苯并呋喃和吲哚合成以及N-酰基保护的吲哚的C2位置选择性烷基化的新方法。 2-(烷基氨基)吡啶的对映选择性sp〜3 C-H烷基化和杂芳族胺的分子间对映选择性加氢胺化得到各种手性胺。在2-烷氧基吡啶中的O-向N-烷基迁移通过C-O键裂解得到N-烷基吡啶酮。

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