Catalytic, contra-Thermodynamic Alkene Isomerization

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

Abstract

The positional isomerization of C–C double bonds is a powerful strategy for the interconversion of alkene regioisomers. However, existing methods provide access to thermodynamically more stable isomers from less stable starting materials. Here we report the discovery of a dual catalyst system that promotes contra-thermodynamic positional alkene isomerization under photochemical irradiation, providing access to terminal alkene isomers directly from conjugated, internal alkene starting materials. The utility of the method is demonstrated in the deconjugation of diverse electron rich/poor alkenes and through strategic application to natural product synthesis. Mechanistic studies are consistent with a regiospecific bimolecular homolytic substitution (SH2') mechanism proceeding through an allyl-cobaloxime intermediate.

Keywords

alkene
isomerization
photoredox
catalysis

Supplementary materials

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Description
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Supporting Information
Description
General methods, synthetic procedures, product isolation and characterization, X ray crystallographic data and NMR spectra.
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