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首例催化高对映选择性酮亚胺烷基化反应——一种合成光学活性季铵型α-氨基酸的新方法。

The first catalytic highly enantioselective alkylation of ketimines--a novel approach to optically active quaternary alpha-amino acids.

作者信息

Saaby Steen, Nakama Kimitaka, Lie Mette Alstrup, Hazell Rita G, Jørgensen Karl Anker

机构信息

The Danish National Research Foundation: Center for Catalysis, Department of Chemistry, Aarhus University, 8000 Aarhus C, Denmark.

出版信息

Chemistry. 2003 Dec 15;9(24):6145-54. doi: 10.1002/chem.200305302.

Abstract

A series of novel ketimines with intrinsic protecting group anchoring was synthesized and allowed to react with various silylketene acetals in the presence of 5-10 mol % of a chiral Zn(OTf)(2)-(R,R)-Ph-pybox-aqua complex. The corresponding optically active quaternary alpha-amino acid derivatives were obtained in high yields and with enantioselectivities ranging from 34 % up to 95 % ee. The catalyst was studied by (1)H NMR spectroscopy and X-ray crystallography, and a dynamic equilibrium of two species was identified in solution. These are a homo-chiral 1:2 metal-ligand complex and a 1:1 metal-ligand complex, of which the latter is expected to be the actual catalyst of the diastereo- and enantioselective reaction. A strong positive nonlinear effect was observed due to the formation of a catalytically inactive 1:2 metal-ligand hetero-chiral complex. On the basis of DFT calculations and the absolute stereochemistry of the products, simultaneous coordination of the imino electrophile and a single molecule of H(2)O to the chiral Lewis acid complex is proposed. Coordination of the imine-nitrogen atom in the axial position of an octahedral complex can account for the facial selectivity as well as the diastereoselectivity observed.

摘要

合成了一系列具有内在保护基团锚定作用的新型酮亚胺,并使其在5 - 10 mol%的手性Zn(OTf)₂-(R,R)-Ph-pybox-水络合物存在下与各种甲硅烷基烯酮缩醛反应。以高收率得到了相应的光学活性季α-氨基酸衍生物,对映选择性范围为34%至95% ee。通过¹H NMR光谱和X射线晶体学对催化剂进行了研究,在溶液中鉴定出两种物质的动态平衡。它们是同手性的1:2金属-配体络合物和1:1金属-配体络合物,其中后者预计是立体选择性和对映选择性反应的实际催化剂。由于形成了催化无活性的1:2金属-配体杂手性络合物,观察到了强烈的正非线性效应。基于密度泛函理论计算和产物的绝对立体化学,提出了亚氨基亲电试剂和单分子H₂O同时与手性路易斯酸络合物配位。八面体络合物轴向位置的亚胺氮原子配位可以解释所观察到的面选择性以及非对映选择性。

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