Scinovex
articleTop 1% cited

Chiral Aziridines—Their Synthesis and Use in Stereoselective Transformations

Angewandte Chemie International Edition in English · 1994 · Vol. 33(6) · pp. 599–619
David Tanner

Abstract

Abstract The preparation of enantiomerically pure compounds is one of the major areas of organic chemistry. Much emphasis is placed on the elaboration of naturally occurring starting materials and on the development of techniques for enantio‐selective transformations of achiral substrates. In this field, chiral aziridines form an attractive class of compounds, since they are available in enantiomerically pure (or highly enriched) form by a variety of procedures and can be used for asymmetric synthesis in a number of different ways. The chemistry of aziridines is dominated by ring‐opening reactions, the driving force for which is relief of ring strain. By suitable choice of sub‐stituents on the carbon and nitrogen atoms, excellent stereo‐ and regiocontrol can be attained in ring‐opening reactions with a wide variety of nucleophiles, including organometallic reagents; this makes chiral aziridines useful as substrates for the synthesis of important biologically active species including alkaloids, amino acids, and /Mactam antibiotics. Substrate‐controlled diastereo‐selective synthesis is also possible by use of aziridines as removable chiral auxiliaries , while metalation at a ring carbon atom allows aziridines to be used as chiral reagents for asymmetric synthesis. Chiral bisaziridines can act as ligands for transition metals, and applications in the challenging field of enantioselective catalysis can be envisioned. Today, the exclusion of three‐membered carbo‐ and heterocycles from the arsenal of the organic chemist is inconceivable . H. Heimgartner, Angew. Chem. 1991 , 103 , 271; Angew. Chem. Int. Ed. Engl. 1991 , 30 , 238.

Synthesis and Catalytic ReactionsAsymmetric Hydrogenation and CatalysisAsymmetric Synthesis and CatalysisEnantioselective synthesisChemistryRing (chemistry)Organic synthesisCombinatorial chemistryNucleophileReagentSynthonStereoselectivityOrganic chemistry
Citations
1,052
FWCI
35.78
field-weighted impact
References
214
Percentile
100%
vs. same field & year
Citations per year
Cited by
Click Chemistry: Diverse Chemical Function from a Few Good Reactions
Angewandte Chemie International Edition · 2001 · 9,278 citations
Nucleophilic ring opening of aziridines
Tetrahedron · 2004 · 881 citations
Modern Synthetic Methods for Copper‐Mediated C(aryl)O, C(aryl)N, and C(aryl)S Bond Formation
Angewandte Chemie International Edition · 2003 · 2,521 citations
Click Chemistry: Diverse Chemical Function from a Few Good Reactions
Angewandte Chemie International Edition · 2001 · 12,920 citations
References
Principles and Applications of Organotransition Metal Chemistry
Journal of Organometallic Chemistry · 1987 · 2,140 citations
Contrasteric carboximide hydrolysis with lithium hydroperoxide
Tetrahedron Letters · 1987 · 457 citations
Synthetically Useful Reactions of Epoxides
Synthesis · 1984 · 791 citations
Tetrahedron report number 203
Tetrahedron · 1986 · 651 citations
Houben-Weyl methoden der organischen chemie
Journal of Organometallic Chemistry · 1979 · 1,050 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.

Chiral Aziridines—Their Synthesis and Use in Stereoselective Transformations · Scinovex