A general and efficient protocol for direct C–H alkylation and acylation of <i>N</i>-heterocycles, using readily accessible carboxylic acids as radical precursors under visible-light irradiation without a photocatalyst and an additional acid additive, has been developed. This protocol provides expedient access to substituted <i>N</i>-heterocycles under mild and metal-free conditions. Mechanistic experiments indicate that this reaction proceeds through a visible-light-initiated radical chain propagation mechanism
A metal-free photoredox C–H alkylation of heteroaromatics from readily available carboxylic acids us...
Despite significant progress in aliphatic decarboxylation, an efficient and general protocol for rad...
Carboxylic acids gain more and more in importance as versatile and renewable starting materials for ...
A photoinduced acylation of N-heterocycles is explored. This visible-light triggered reaction occurs...
The visible-light-mediated decarboxylative functionalization of aliphatic carboxylic acids using org...
This work describes a mild, environmentally friendly method to activate natural carboxylic acids for...
This work describes a mild, environmentally friendly method to activate natural carboxylic acids for...
Acylation of electron-deficient heteroaromatic compounds has been developed using visible light. α-K...
Acylation of electron-deficient heteroaromatic compounds has been developed using visible light. alp...
We report a mild method for the decarboxylative C-C bond formation between natural carboxylic acids ...
A net redox-neutral method for the decarboxylative alkylation of heteroarenes using photoredox catal...
A metal-free, visible-light-induced photocatalytic procedure for decarboxylative alkynylation of car...
An efficient visible-light-driven iron-catalyzed decarboxylative C–N coupling reaction of alkyl carb...
Despite significant progress in aliphatic decarboxylation, an efficient and general protocol for rad...
Despite significant progress in aliphatic decarboxylation, an efficient and general protocol for rad...
A metal-free photoredox C–H alkylation of heteroaromatics from readily available carboxylic acids us...
Despite significant progress in aliphatic decarboxylation, an efficient and general protocol for rad...
Carboxylic acids gain more and more in importance as versatile and renewable starting materials for ...
A photoinduced acylation of N-heterocycles is explored. This visible-light triggered reaction occurs...
The visible-light-mediated decarboxylative functionalization of aliphatic carboxylic acids using org...
This work describes a mild, environmentally friendly method to activate natural carboxylic acids for...
This work describes a mild, environmentally friendly method to activate natural carboxylic acids for...
Acylation of electron-deficient heteroaromatic compounds has been developed using visible light. α-K...
Acylation of electron-deficient heteroaromatic compounds has been developed using visible light. alp...
We report a mild method for the decarboxylative C-C bond formation between natural carboxylic acids ...
A net redox-neutral method for the decarboxylative alkylation of heteroarenes using photoredox catal...
A metal-free, visible-light-induced photocatalytic procedure for decarboxylative alkynylation of car...
An efficient visible-light-driven iron-catalyzed decarboxylative C–N coupling reaction of alkyl carb...
Despite significant progress in aliphatic decarboxylation, an efficient and general protocol for rad...
Despite significant progress in aliphatic decarboxylation, an efficient and general protocol for rad...
A metal-free photoredox C–H alkylation of heteroaromatics from readily available carboxylic acids us...
Despite significant progress in aliphatic decarboxylation, an efficient and general protocol for rad...
Carboxylic acids gain more and more in importance as versatile and renewable starting materials for ...