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首页> 外文期刊>Journal of the American Chemical Society >Highly enantioselective phase-transfer-catalyzed alkylation of protected alpha-amino acid amides toward practical asymmetric synthesis of vicinal diamines, alpha-amino ketones, and alpha-amino alcohols
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Highly enantioselective phase-transfer-catalyzed alkylation of protected alpha-amino acid amides toward practical asymmetric synthesis of vicinal diamines, alpha-amino ketones, and alpha-amino alcohols

机译:受保护的α-氨基酸酰胺的高度对映选择性相转移催化的烷基化,实现邻二胺,α-氨基酮和α-氨基醇的实际不对称合成

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摘要

Highly enantioselective alkylation of protected glycine diphenylmethyl (Dpm) amide 1 and Weinreb amide 10 has been realized under phase-transfer conditions by the successful utilization of designer chiral quaternary ammonium salts of type 4 as catalyst. Particularly, remarkable reactivity of the chiral ammonium enolate derived from 1b and 4c allowed the reaction with less reactive simple secondary alkyl halides with high efficiency and enantioselectivity. An additional unique feature of this chiral ammonium enolate is its ability to recognize the chirality of beta-branched primary alkyl halides, which provides impressive levels of kinetic resolution and double stereodifferentiation during the alkylation, allowing for two alpha- and gamma-stereocenters to be controlled. Combined with the subsequent reduction using LiAlH4 in cyclopentyl methyl ether (CPME), this system offers a facile access to structurally diverse optically active vicinal diamines. Furthermore, the optically active a-amino acid Weinreb amide 11 can be efficiently converted to the corresponding amino ketone by a simple treatment with Grignard reagents. In addition, reduction and alkylation of the optically active alpha-amino ketone into both syn and anti alpha-amino alcohols with almost complete relative and absolute stereochemical control have been achieved. With (S,S)- and (R,R)-4 in hand, the present approach renders both enantionners of alpha-amino amides including Weinreb amides readily available with enormous structural variation and also establishes a general and practical route to vicinal diamines, a-amino ketones, and a-amino alcohols with the desired stereochemistry.
机译:在相转移条件下,通过成功利用4型设计手性季铵盐作为催化剂,已实现了对氨基苯甲酸二苯甲基(Dpm)酰胺1和Weinreb酰胺10的高度对映选择性烷基化。特别地,衍生自1b和4c的手性烯醇铵的显着反应性允许与反应性较低的简单仲烷基卤化物以高效率和对映选择性进行反应。该手性烯醇铵盐的另一个独特功能是能够识别β-支化伯烷基卤化物的手性,在烷基化过程中提供了令人印象深刻的动力学分辨率和双立体分化,可控制两个α-和γ-立体中心。结合随后在环戊基甲醚(CPME)中使用LiAlH4进行的还原,该系统可轻松获得结构多样的旋光邻位二胺。此外,通过用格氏试剂简单处理,可以将旋光性α-氨基酸Weinreb酰胺11有效地转化为相应的氨基酮。另外,已经实现了将旋光性α-氨基酮还原和烷基化为顺式和反式α-氨基醇两者,具有几乎完全的相对和绝对立体化学控制。有了(S,S)-和(R,R)-4,本方法可以使包括Weinreb酰胺在内的α-氨基酰胺的对映体都容易获得,并具有巨大的结构变异性,并且为邻二胺的建立建立了通用和实用的途径,具有所需立体化学的α-氨基酮和α-氨基醇。

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