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溶剂和温度依赖性的手性氮丙啶的功能化。

Solvent- and temperature-dependent functionalisation of enantioenriched aziridines.

机构信息

Dipartimento Farmaco Chimico, Università degli Studi di Bari A. Moro, Via E. Orabona, 4 70125 Bari, Italy.

出版信息

Chemistry. 2011 Jan 3;17(1):286-96. doi: 10.1002/chem.201002172. Epub 2010 Nov 12.

Abstract

A highly stereo- and regioselective functionalisation of chiral non-racemic aziridines is reported. By starting from a parent enantioenriched aziridine and finely tuning the reaction conditions, it is possible to address the regio- and stereoselectivity of the lithiation/electrophile trapping sequence, thereby allowing the preparation of highly enantioenriched functionalised aziridines. From chiral N-alkyl trans-2,3-diphenylaziridines (S,S)-1 a,b, two differently configured chiral aziridinyllithiums could be generated (trans-1 a,b-Li in toluene and cis-1 a,b-Li in THF), thus disclosing a solvent-dependent reactivity that is useful for the synthesis of chiral tri-substituted aziridines with different stereochemistry. In contrast, chiral aziridine (S,S)-1 c showed a temperature-dependent reactivity to give chiral ortho-lithiated aziridine 1 c-ortho-Li at -78 °C and α-lithiated aziridine 1 c-α-Li at 0 °C. Both lithiated intermediates react with electrophiles to give enantioenriched ortho- and α-functionalised aziridines. The reaction of all the lithiated aziridines with carbonyl compounds furnished useful chiral hydroxyalkylated derivatives, the stereochemistry of which was ascertained by X-ray and NMR spectroscopic analysis. The usefulness of chiral non-racemic functionalised aziridines has been demonstrated by reductive ring-opening reactions furnishing chiral amines that bear quaternary stereogenic centres and chiral 1,2-, 1,3- and 1,5-aminoalcohols. It is remarkable that the solvent-dependent reactivity observed with (S,S)-1 a,b permits the preparation of both the enantiomers of amines (11 and ent-11) and 1,2-aminoalcohols (13 and ent-13) starting from the same parent aziridine. Interestingly, for the first time, a configurationally stable chiral α-lithiated aziridine (1 c-α-Li) has been generated at 0 °C. In addition, ortho-hydroxyalkylated aziridines have been easily converted into chiral aminoalkyl phthalans, which are useful building blocks in medicinal chemistry.

摘要

本文报道了手性非外消旋氮丙啶的高立体选择性和区域选择性官能化。通过从母体对映体富集氮丙啶出发,精细调整反应条件,可以控制锂化/亲电试剂捕获序列的区域和立体选择性,从而制备高对映体富集的官能化氮丙啶。从手性 N-烷基反式-2,3-二苯基氮丙啶(S,S)-1a,b,可以生成两种不同构型的手性氮丙啶锂(在甲苯中为反式-1a,b-Li,在四氢呋喃中为顺式-1a,b-Li),从而揭示了一种溶剂依赖性反应性,这对于合成具有不同立体化学的手性三取代氮丙啶很有用。相比之下,手性氮丙啶(S,S)-1c 表现出温度依赖性反应性,在-78°C 下生成手性邻位锂化氮丙啶 1c-ortho-Li,在 0°C 下生成α-锂化氮丙啶 1c-α-Li。两种锂化中间体与亲电试剂反应得到对映体富集的邻位和α-官能化氮丙啶。所有锂化氮丙啶与羰基化合物的反应都得到了有用的手性羟基烷基化衍生物,其立体化学通过 X 射线和 NMR 光谱分析确定。通过还原开环反应制备手性胺,这些胺带有季立体中心和手性 1,2-、1,3-和 1,5-氨基醇,证明了手性非外消旋功能化氮丙啶的有用性。值得注意的是,(S,S)-1a,b 中观察到的溶剂依赖性反应性允许从相同的母体氮丙啶制备胺(11 和 ent-11)和 1,2-氨基醇(13 和 ent-13)的对映异构体。有趣的是,首次在 0°C 下生成了构型稳定的手性α-锂化氮丙啶(1c-α-Li)。此外,邻位羟烷基化氮丙啶很容易转化为手性氨基烷基邻苯二甲酰亚胺,这在手性药物化学中是有用的构建块。

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