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由醇和胺直接合成酰胺并释放出氢气。

Direct synthesis of amides from alcohols and amines with liberation of H2.

作者信息

Gunanathan Chidambaram, Ben-David Yehoshoa, Milstein David

机构信息

Department of Organic Chemistry, Weizmann Institute of Science, Rehovot 76100, Israel.

出版信息

Science. 2007 Aug 10;317(5839):790-2. doi: 10.1126/science.1145295.

Abstract

Given the widespread importance of amides in biochemical and chemical systems, an efficient synthesis that avoids wasteful use of stoichiometric coupling reagents or corrosive acidic and basic media is highly desirable. We report a reaction in which primary amines are directly acylated by equimolar amounts of alcohols to produce amides and molecular hydrogen (the only products) in high yields and high turnover numbers. This reaction is catalyzed by a ruthenium complex based on a dearomatized PNN-type ligand [where PNN is 2-(di-tert-butylphosphinomethyl)-6-(diethylaminomethyl)pyridine], and no base or acid promoters are required. Use of primary diamines in the reaction leads to bis-amides, whereas with a mixed primary-secondary amine substrate, chemoselective acylation of the primary amine group takes place. The proposed mechanism involves dehydrogenation of hemiaminal intermediates formed by the reaction of an aldehyde intermediate with the amine.

摘要

鉴于酰胺在生物化学和化学体系中的广泛重要性,非常需要一种高效合成方法,避免浪费地使用化学计量的偶联试剂或腐蚀性的酸性和碱性介质。我们报道了一种反应,其中伯胺被等摩尔量的醇直接酰化,以高产率和高周转数生成酰胺和分子氢(唯一产物)。该反应由基于去芳构化PNN型配体的钌配合物催化[其中PNN为2-(二叔丁基膦甲基)-6-(二乙氨基甲基)吡啶],且无需碱或酸促进剂。反应中使用伯二胺会生成双酰胺,而使用伯仲胺混合底物时,伯胺基团会发生化学选择性酰化。所提出的机理涉及由醛中间体与胺反应形成的半胺中间体的脱氢反应。

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