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高效和立体选择性的金(I)催化二级胺和炔烃合成叔胺:底物范围和机理见解。

Highly efficient and diastereoselective gold(I)-catalyzed synthesis of tertiary amines from secondary amines and alkynes: substrate scope and mechanistic insights.

机构信息

Department of Chemistry, State Key Laboratory of Synthetic Chemistry, The University of Hong Kong, Pokfulam Road, Hong Kong. PR China.

出版信息

Chemistry. 2011 Nov 11;17(46):12932-45. doi: 10.1002/chem.201101982. Epub 2011 Oct 20.

Abstract

An efficient method for the synthesis of tertiary amines through a gold(I)-catalyzed tandem reaction of alkynes with secondary amines has been developed. In the presence of ethyl Hantzsch ester and [{(tBu)(2)(o-biphenyl)P}AuCl]/AgBF(4) (2 mol %), a variety of secondary amines bearing electron-deficient and electron-rich substituents and a wide range of alkynes, including terminal and internal aryl alkynes, aliphatic alkynes, and electron-deficient alkynes, underwent a tandem reaction to afford the corresponding tertiary amines in up to 99 % yield. For indolines bearing a preexisting chiral center, their reactions with alkynes in the presence of ethyl Hantzsch ester catalyzed by [{(tBu)(2)(o-biphenyl)P}AuCl]/AgBF(4) (2 mol %) afforded tertiary amines in excellent yields and with good to excellent diastereoselectivity. All of these organic transformations can be conducted as a one-pot reaction from simple and readily available starting materials without the need of isolation of air/moisture-sensitive enamine intermediates, and under mild reaction conditions (mostly room temperature and mild reducing agents). Mechanistic studies by NMR spectroscopy, ESI-MS, isotope labeling studies, and DFT calculations on this gold(I)-catalyzed tandem reaction reveal that the first step involving a monomeric cationic gold(I)-alkyne intermediate is more likely than a gold(I)-amine intermediate, a three-coordinate gold(I) intermediate, or a dinuclear gold(I)-alkyne intermediate. These studies also support the proposed reaction pathway, which involves a gold(I)-coordinated enamine complex as a key intermediate for the subsequent transfer hydrogenation with a hydride source, and reveal the intrinsic stereospecific nature of these transformations observed in the experiments.

摘要

一种通过金(I)催化炔烃与仲胺的串联反应合成叔胺的有效方法已经开发出来。在乙基 Hantzsch 酯和[{(tBu)(2)(邻联苯基)P}AuCl]/AgBF4(2 mol%)的存在下,各种带有缺电子和富电子取代基的仲胺以及广泛的炔烃,包括末端和内部芳基炔烃、脂肪族炔烃和缺电子炔烃,进行串联反应以高达 99%的收率得到相应的叔胺。对于带有预先存在的手性中心的吲哚啉,它们在乙基 Hantzsch 酯存在下与炔烃的反应,在[{(tBu)(2)(邻联苯基)P}AuCl]/AgBF4(2 mol%)的催化下,以优异的收率和良好到优秀的非对映选择性得到叔胺。所有这些有机转化都可以作为一锅反应进行,从简单易得的起始原料进行,无需分离空气/水分敏感的烯胺中间体,并且在温和的反应条件下(主要是室温温和的还原剂)进行。通过 NMR 光谱、ESI-MS、同位素标记研究和对该金(I)催化串联反应的 DFT 计算的机理研究表明,涉及单体阳离子金(I)-炔烃中间体的第一步比金(I)-胺中间体、三配位金(I)中间体或双核金(I)-炔烃中间体更有可能。这些研究还支持所提出的反应途径,该途径涉及金(I)配位的烯胺络合物作为随后与氢源进行转移氢化的关键中间体,并揭示了实验中观察到的这些转化的固有立体特异性。

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