Issue 10, 2015

Cycloaddition of cyclobutenone and azomethine imine enabled by chiral isothiourea organic catalysts

Abstract

The addition of an organic catalyst to the ketone moiety of a γ-mono-chloride substituted cyclobutenone destroys its stable, conjugated and nearly planar structure. The C–C bond in the resulting less stable anionic oxy-substituted non-planar intermediate is then activated. The breaking of one C–C single bond leads to a catalyst-bound intermediate that undergoes α-carbon selective reactions with azomethine imines to afford nitrogen-containing heterocyclic compounds with excellent diastereo- and enantio-selectivities. Our organocatalytic approach provides a new reaction pattern for C–C bond activation of cyclobutenones that is unavailable with transition metal catalysis. In addition, the present study with isothioureas as the organocatalysts expands the potential in using organocatalysts for C–C bond breaking and selective reactions.

Graphical abstract: Cycloaddition of cyclobutenone and azomethine imine enabled by chiral isothiourea organic catalysts

Supplementary files

Article information

Article type
Edge Article
Submitted
02 Jun 2015
Accepted
18 Jul 2015
First published
20 Jul 2015
This article is Open Access

All publication charges for this article have been paid for by the Royal Society of Chemistry
Creative Commons BY-NC license

Chem. Sci., 2015,6, 6008-6012

Cycloaddition of cyclobutenone and azomethine imine enabled by chiral isothiourea organic catalysts

B. Li, Y. Wang, Z. Jin and Y. R. Chi, Chem. Sci., 2015, 6, 6008 DOI: 10.1039/C5SC01972A

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