Despite the prevalence of alcohols and carboxylic acids as functional groups in organic molecules and the potential to serve as radical precursors, C–O bonds remain difficult to activate. We report a synthetic strategy for direct access to both alkyl and acyl radicals from these ubiquitous functional groups via photoredox catalysis. This method exploits the unique reactivity of phosphoranyl radicals, generated from a polar/SET crossover between a phosphine radical cation and an oxygen-centered nucleophile. We show the desired reactivity in the reduction of benzylic alcohols to the corresponding benzyl radicals with terminal H atom trapping to afford the deoxygenated products. Using the same method, we demonstrate access to synthetically ver...
Chemists extensively use free radical reactivity for applications in organic synthesis, materials sc...
Photoredox catalysis has provided many approaches to C(sp3)-H functionalization that enable selectiv...
Photoredox catalysis has emerged as the currently most powerful strategy to manipulatethe open-shell...
Alcohols and carboxylic acids are ubiquitous functional groups found in organic molecules that could...
Photoinduced generation of phosphoranyl radicals offers a versatile strategy to access a variety of ...
We report a novel example of electro-mediated photoredox catalysis (e-PRC) in the reductive cleavage...
Alkyl radicals are powerful intermediates for the generation of carbon-carbon bonds, which play a...
Energy supplied in the form of photons can interact with organic chromophores, enabling challenging ...
Photocatalytic generation of phosphoranyl radicals is fast emerging as an essential method for the g...
Over the last decade, visible-light photoredox catalysis is rising as an important route for new che...
The combination of photoredox catalysis with the Wolff-Kishner (WK) reaction allows the difunctional...
Within the past decade, photoredox catalysis has enabled numerous decarboxylative transformations to...
Photoredox catalysis is a rapidly evolving field enabling chemists to design novel methods for chemi...
We detail a strategy that uses a commercially available nucleophilic organic catalyst to generate ac...
Aliphatic alkynes and nitriles are privileged motifs in organic chemistry. Therefore, alkynes and ni...
Chemists extensively use free radical reactivity for applications in organic synthesis, materials sc...
Photoredox catalysis has provided many approaches to C(sp3)-H functionalization that enable selectiv...
Photoredox catalysis has emerged as the currently most powerful strategy to manipulatethe open-shell...
Alcohols and carboxylic acids are ubiquitous functional groups found in organic molecules that could...
Photoinduced generation of phosphoranyl radicals offers a versatile strategy to access a variety of ...
We report a novel example of electro-mediated photoredox catalysis (e-PRC) in the reductive cleavage...
Alkyl radicals are powerful intermediates for the generation of carbon-carbon bonds, which play a...
Energy supplied in the form of photons can interact with organic chromophores, enabling challenging ...
Photocatalytic generation of phosphoranyl radicals is fast emerging as an essential method for the g...
Over the last decade, visible-light photoredox catalysis is rising as an important route for new che...
The combination of photoredox catalysis with the Wolff-Kishner (WK) reaction allows the difunctional...
Within the past decade, photoredox catalysis has enabled numerous decarboxylative transformations to...
Photoredox catalysis is a rapidly evolving field enabling chemists to design novel methods for chemi...
We detail a strategy that uses a commercially available nucleophilic organic catalyst to generate ac...
Aliphatic alkynes and nitriles are privileged motifs in organic chemistry. Therefore, alkynes and ni...
Chemists extensively use free radical reactivity for applications in organic synthesis, materials sc...
Photoredox catalysis has provided many approaches to C(sp3)-H functionalization that enable selectiv...
Photoredox catalysis has emerged as the currently most powerful strategy to manipulatethe open-shell...