Jacobsen Mikkel F, Ionita Liviu, Skrydstrup Troels
Department of Chemistry, University of Aarhus, Langelandsgade 140, 8000 Aarhus C, Denmark.
J Org Chem. 2004 Jul 9;69(14):4792-6. doi: 10.1021/jo0358170.
The Lewis acid-mediated addition of silyl enolates to easily accessible homochiral N-acylhydrazones derived from 3-amino-2-oxazolidinones proceeded in yields up to 71% and diastereomeric ratios of 99:1. In most cases, optimal reaction conditions entailed the simple use of ZnCl(2) in acetonitrile at room temperature. Hydrazones derived from phenyl-, isopropyl-, and benzyl-substituted 2-oxazolidinones were examined in the reaction in terms of yield and diastereoselectivity. The facile SmI(2)-mediated N-N bond cleavage of the formed hydrazines was demonstrated yielding a beta-amino acid derivative. Hence, the overall reaction sequence constitutes an efficient asymmetric Mannich-type reaction. The sense of diastereoselectivity was explained by a preferential attack on the less shielded Si face of the chiral hydrazones and confirmed by means of X-ray crystallography.
在路易斯酸介导下,硅烯醇盐加成到由3-氨基-2-恶唑烷酮衍生的易于获得的同手性N-酰基腙上,产率高达71%,非对映体比例为99:1。在大多数情况下,最佳反应条件是在室温下于乙腈中简单使用ZnCl₂。对由苯基、异丙基和苄基取代的2-恶唑烷酮衍生的腙进行了反应产率和非对映选择性方面的研究。已证明所形成的肼经SmI₂介导的N-N键裂解可生成β-氨基酸衍生物。因此,整个反应序列构成了一个有效的不对称曼尼希型反应。非对映选择性的方向是通过对手性腙较少屏蔽的硅面的优先进攻来解释的,并通过X射线晶体学得到证实。