首页> 美国卫生研究院文献>other >Asymmetric C-C Bond Formation between Chiral N-Phosphonyl Imines and Ni(II)-Complex of Glycine Schiff Base Provides a GAP Synthesis of αβ-syn-Diamino Acid Derivatives
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Asymmetric C-C Bond Formation between Chiral N-Phosphonyl Imines and Ni(II)-Complex of Glycine Schiff Base Provides a GAP Synthesis of αβ-syn-Diamino Acid Derivatives

机译:手性N-膦酰基亚胺与甘氨酸席夫碱的Ni(II)-络合物之间的不对称C-C键形成提供了GAP合成的αβ-合成-二氨基酸衍生物

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摘要

The GAP asymmetric synthesis of α,β-diamino acid derivatives has been achieved by reacting chiral N-phosphonyl imines with Ni(II)-complex of glycine ester-based enolate without the use of traditional purifications of chromatography and recrystallization. The successful control of synstereochemistry of vicinal diamino products complements our previous methods which afforded anti stereoisomers and enables all four individual isomers to be synthesized by simply changing enolate geometry. In contrast to our previous synthesis where required at least 5 equiv of glycine Schiff base enolate for complete conversion, the new synthesis only needs 1.1 equiv of glycine Schiff base enolate to give complete diastereoselectivity (>99% de) and yields (91% – 97%). The absolute stereochemistry has been unambiguously determined by X-ray structural analysis.
机译:通过使手性N-膦酰基亚胺与甘氨酸酯基烯醇盐的Ni(II)络合物反应,无需使用色谱和重结晶的传统提纯方法,即可实现α,β-二氨基酸衍生物的GAP不对称合成。成功控制邻位二氨基产物的共立体化学是对我们先前提供抗立体异构体的方法的补充,并且使所有四个单独的异构体都可以通过简单地改变烯醇的几何形状来合成。与我们之前的合成方法至少需要5当量的甘氨酸席夫碱烯醇化物才能完全转化相比,新的合成方法仅需要1.1当量的甘氨酸席夫碱烯醇化物才能得到完全的非对映选择性(> 99%de)和产率(91%– 97 %)。绝对立体化学已通过X射线结构分析明确确定。

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