Photo-Organocatalytic Enantioselective Radical Cascade Enabled by Single-Electron Transfer Activation of Allenes

Author

Perego, Luca Alessandro

Bonilla, Pablo

Melchiorre, Paolo

Publication date

2019-09-19



Abstract

Allenes are commonly used in metal-mediated transformations, cycloaddition reactions, and radical processes. However, their activation by single-electron transfer (SET) is largely underexplored. Herein, we report a visible light-driven enantioselective organocatalytic process that uses the excited-state reactivity of chiral iminium ions to activate allenes by SET oxidation. The ensuing allene cation radicals participate in stereocontrolled cascade reactions to deliver chiral bicyclic scaffolds with good enantioselectivity and exquisite diastereoselectivity. Density Functional Theory (DFT) calculations support a mechanism that combines the peculiar chemistry of allene radical cations with polar reactivity.

Document Type

Article
Accepted version

Language

English

Subject

54

Pages

302 p.

Grant Agreement Number

MICIU (CTQ2016-75520-P)

AGAUR (Grant 2017 SGR 981)

ERC-2015-CoG 681840 - CATA-LUX

Documents

19_Photo‐Organocatalytic Enantioselective Radical Cascade Enabled by Single‐Electron Transfer Activation of Allenes.pdf

1.226Mb

 

Rights

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