Merging singlet-oxygen induced furan oxidations with organocatalysis: Synthesis of enantiopure cyclopentanones and hydrindanes

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Abstract

A new methodology is described herein which converts simple and readily accesible furan substrates into complex enantio-enriched carbocyclic skeletons through the implementation of a simple one-pot procedure. Singlet oxygen furan photoxygenation affords an enedione which then participates in an organocatalysed double-Michael reaction with an enal to furnish a cyclopentanone structure with up to four new contiguous stereogenic centres. The enantioselectivity and diastereoselectivity of this process are both excellent. If desired, further aldol-annulation steps can be appended to the cascade reaction sequence to afford key enantiopure hydrindane motifs.

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Kalaitzakis, D., Sofiadis, M., Tsopanakis, V., Montagnon, T., & Vassilikogiannakis, G. (2020). Merging singlet-oxygen induced furan oxidations with organocatalysis: Synthesis of enantiopure cyclopentanones and hydrindanes. Organic and Biomolecular Chemistry, 18(15), 2817–2822. https://doi.org/10.1039/d0ob00468e

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