Modular Synthesis of Azabicyclohexanes and Cyclobutenyl Amines

01 September 2021, Version 1
This content is a preprint and has not undergone peer review at the time of posting.

Abstract

The development of two divergent and complementary Lewis acid catalyzed additions of bicyclobutanes to imines is described. Microscale high-throughput experimentation was integral to the discovery and optimization of both reactions. N-arylimines undergo formal (3+2) cycloaddition with bicyclobutanes to yield azabicyclo[2.1.1]hexanes in a single step; in contrast, N-alkylimines undergo an addition/elimination sequence to generate cyclobutenyl methanamine products with high diastereoselectivity. These new products contain a variety of synthetic handles for further elaboration, including many functional groups relevant to pharmaceutical synthesis. The divergent reactivity observed is attributed to differences in basicity and nucleophilicity of the nitrogen atom in a common carbocation intermediate, leading to either nucleophilic attack (N-aryl) or E1 elimination (N-alkyl).

Keywords

cycloaddition
heterocycles
bioisosteres
bicyclic compounds

Supplementary materials

Title
Description
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Title
Modular Synthesis of Azabicyclohexanes and Cyclobutenyl Amines
Description
Detailed experimental procedures, full tables of screening data, characterization data for new compounds, and X-ray crystallography details.
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