Abstract

In this report, we describe the synthetic elaboration of the easily available enantiomerically pure β-amino alcohols. Attempted direct substitution of the hydroxyl group by azido-functionality in the Mitsunobu reaction with hydrazoic acid was inefficient or led to a diastereomeric mixture. These outcomes resulted from the participation of aziridines. Intentionally performed internal Mitsunobu reaction of β-amino alcohols gave eight chiral aziridines in 45–82% yield. The structural and configuration identity of products was confirmed by NMR data compared to the DFT calculated GIAO values. For 1,2,3-trisubstituted aziridines slow configurational inversion at the endocyclic nitrogen atom was observed by NMR at room temperature. Moreover, when aziridine was titrated with Zn(OAc)2 under NMR control, only one of two N-epimers directly participated in complexation. The aziridines underwent ring opening with HN3 to form the corresponding azido amines as single regio- and diastereomers in 90–97% yield. Different results were obtained for 1,2-disubstituted and 1,2,3-trisubstituted aziridines. For the later aziridines ring closure and ring opening occurred at different carbon stereocenters, thus yielding products with two inverted configurations, compared to the starting amino alcohol. The 1,2-disubstituted aziridines produced azido amines of the same configuration as the starting β-amino alcohols. To obtain a complete series of diastereomeric vic-diamines, we converted the amino alcohols into cyclic sulfamidates, which reacted with sodium azide in SN2 reaction (25–58% overall yield). The azides obtained either way underwent the Staudinger reduction, giving a series of six new chiral vic-diamines of defined stereochemistries.

Highlights

  • Pure β-amino alcohols belong to a privileged group of important and available organocatalysts and chiral building blocks [1,2]

  • For their further transformations into the multi-interacting ligands, we explore the exchange of the hydroxyl group into the nitrogen-containing moieties

  • Reactions were monitored by thin-layer chromatography (TLC) on silica gel 60 F-254 precoated plates, and spots were visualized with a UV lamp and/or Dragendorff reagent

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Summary

Introduction

Pure β-amino alcohols belong to a privileged group of important and available organocatalysts and chiral building blocks [1,2]. We have developed the synthesis of new chiral β-amino alcohols, containing metal-complexing 2-pyridyl and 6-(2,20 -bipyridyl) fragments [5]. For their further transformations into the multi-interacting ligands, we explore the exchange of the hydroxyl group into the nitrogen-containing moieties. 25, 727transformations into the multi-interacting ligands, we explore the exchange of 2 of hydroxyl group into the nitrogen-containing moieties. The preparation of chiral vicinal diamines constitutes an important challenge and several

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