A General Light-Driven Organocatalytic Platform for the Activation of Inert Substrates

Author

Wu, Shuo

Schiel, Florian

Melchiorre, Paolo

Publication date

2023-06-15



Abstract

Due to their strong covalent bonds and low reduction potentials, activating inert substrates is challenging. Recent advances in photoredox catalysis offered a number of solutions, each of which useful for activating specific inert bonds. Developing a general catalytic platform that can consistently target a broad range of inert substrates would be synthetically useful. Herein, we report a readily available indole thiolate organocatalyst that, upon excitation with 405 nm light, acquires a strongly reducing power. This excited-state reactivity served to activate, by single-electron reduction, strong C−F, C−Cl, and C−O bonds in both aromatic and aliphatic substrates. This catalytic platform was versatile enough to promote the reduction of generally recalcitrant electron-rich substrates (Ered<−3.0 V vs SCE), including arenes that afforded 1,4-cyclohexadienes. The protocol was also useful for the borylation and phosphorylation of inert substrates with a high functional group tolerance. Mechanistic studies identified an excited-state thiolate anion as responsible of the highly reducing reactivity.

Document Type

Article
Accepted version

Language

English

CDU Subject

00 - Prolegomena. Fundamentals of knowledge and culture. Propaedeutics

Subject

Química

Pages

7 p.

Publisher

Wiley-VCH

Grant Agreement Number

Agencia Estatal de Investigación (PID2019-106278GB-I00)

China Scholarship Council for a predoctoral fellowship (CSC202006920025)

Documents

Angew Chem Int Ed - 2023 - Wu - A General Light‐Driven Organocatalytic Platform for the Activation of Inert Substrates.pdf

2.171Mb

 

Rights

Creative Commons. Attribution-NonCommercial 4.0 International (CC BY-NC 4.0)

This item appears in the following Collection(s)

Papers [1240]