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1,3‐Dipolar Cycloadditions. Past and Future

Angewandte Chemie International Edition in English · 1963 · Vol. 2(10) · pp. 565–598
Rolf Huisgen

Abstract

Abstract In contrast to the very large number of special methods applicable to syntheses in the heterocyclic series, relatively few general methods are available. The 1,3‐dipolar addition offers a remarkably wide range of utility in the synthesis of five‐membered heterocycles. Here the “1,3‐dipole”, which can only be represented by zwitterionic octet resonance structures, combines in a cycloaddition with a multiple bond system – the “dipolarophile” – to form an uncharged five‐membered ring. Although numerous individual examples of this reaction were known, some even back in the nineteenth century, fruitful development of this synthetic principle has been achieved only in recent years.

Multicomponent Synthesis of HeterocyclesChemical Synthesis and AnalysisSynthesis and Characterization of Heterocyclic CompoundsDipoleCycloadditionRing (chemistry)Computational chemistry1,3-Dipolar cycloadditionRange (aeronautics)ChemistryMaterials scienceOrganic chemistry
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