Effect of Tether Length on endo/exo Stereoselectivity in Alkene–Arene meta‐Photocycloaddition Reactions towards the Aphidocolin/Stemodin Scaffolds

Author:

Alshammari Aljazy A. A.1,Boyd Joseph W.1,Greaves Nicola2,Kettle Jason G.3ORCID,McKendrick John E.1ORCID,Parker Lewis G.1ORCID,Russell Andrew T.1ORCID,Sani Abubakar1,Smith Christopher D.1ORCID

Affiliation:

1. Department of Chemistry University of Reading Whiteknights Reading RG6 6DX UK

2. Department of Chemistry University of Salford Salford M5 4WT UK

3. AstraZeneca Oncology R&D The Discovery Centre, Cambridge Biomedical Campus 1 Francis Crick Avenue Cambridge, United Kingdom CB2 0AA UK

Abstract

AbstractIntramolecular alkene‐arene meta‐photocycloadditions are powerful transformations that use the enhanced reactivity of photoexcited benzene rings to facilitate addition of an alkene 1,3 across donor groups and form complex three‐dimensional fused‐ring systems from readily accessible starting materials. Intramolecular examples have traditionally been restricted to three‐membered tethers, with cycloaddition resulting from exo‐conformation. However, by judicious tether design we have demonstrated that a four‐membered tether can also proceed in good yield; interestingly, via an endo exciplex (1.2 : 1) enabling access to both natural product skeletons and interesting scaffolds for medicinal chemistry research.

Funder

AstraZeneca

Engineering and Physical Sciences Research Council

Publisher

Wiley

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