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Updated: Jul 4, 2026

Preparation of Stable Bicyclic Aziridinium Ions and Their Ring-Opening for the Synthesis of Azaheterocycles
Published on: August 22, 2018
Catalytic synthesis of saturated azacycles using transborylation
Nojus Cironis1, Nathan McRae1, Jack Stubbs1
1EaStCHEM School of Chemistry, The University of Edinburgh, David Brewster Road, Edinburgh, EH9 3FJ, UK. stephen.thomas@ed.ac.uk.
A new catalytic method synthesizes pyrrolidines from azido-butenes using hydroboration and rearrangement. This versatile approach tolerates substitutions and shows potential for other nitrogen-containing heterocycles.
Area of Science:
- Organic Chemistry
- Synthetic Chemistry
- Catalysis
Background:
- Pyrrolidines are important nitrogen-containing heterocycles found in pharmaceuticals and natural products.
- Efficient and selective synthetic routes to substituted pyrrolidines are highly sought after in organic synthesis.
Purpose of the Study:
- To develop a novel, catalytic method for the synthesis of pyrrolidines.
- To explore the scope and limitations of the developed synthetic methodology.
Main Methods:
- Intermolecular cyclisation-homologation of azido-butenes.
- Utilized a sequence involving hydroboration, 1,2-metallate rearrangement, and B-N/B-H transborylation.
- Investigated the reaction with azido-propenes and azido-pentenes.
Main Results:
- Successfully synthesized pyrrolidines via a catalytic reaction sequence.
- Demonstrated tolerance of substitutions at the C1-C3 positions of azido-butenes.
- Observed the formation of an aza-bora heterocycle and a saturated azido-pentane boronic acid pinacol ester when extending the methodology.
Conclusions:
- A simple and catalytic synthesis of pyrrolidines has been achieved.
- The methodology is versatile and tolerates various substitutions.
- Further exploration is needed to fully understand the outcomes with azido-propenes and azido-pentenes.
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