Aryl fluorides are widely used in the pharmaceutical and agrochemical industries<sup>1,2</sup>, and recent advances have enabled their synthesis through the conversion of various functional groups. However, there is a lack of general methods for direct aromatic carbon–hydrogen (C–H) fluorination<sup>3</sup>. Conventional methods require the use of either strong fluorinating reagents, which are often unselective and difficult to handle, such as elemental fluorine, or less reactive reagents that attack only the most activated arenes, which reduces the substrate scope. A method for the direct fluorination of aromatic C–H bonds could facilitate access to fluorinated derivatives of functional molecules that would otherwise be difficult to produc...
A selection of carbon-fluorine bond-forming reactions is presented with particular focus on transiti...
The first catalytic allylic C–H fluorination reaction using a nucleophilic fluoride source is report...
Conspectus: Aromatic fluorides are prevalent in both agrochemical and pharmaceutical agents. However...
Aryl fluorides are widely used in the pharmaceutical and agrochemical industries1,2, and recent adva...
The transition-metal-catalyzed direct C–H bond fluorination is an attractive synthetic tool toward t...
The transition-metal-catalyzed direct C–H bond fluorination is an attractive synthetic tool toward t...
Late-stage fluorination reactions aim to reduce the synthetic limitations of conventional organofluo...
Late-stage fluorination reactions aim to reduce the synthetic limitations of conventional organofluo...
This Review summarizes the advances in fluorination via C(sp2)–H and C(sp3)–H activation. Transition...
Part I: "Ligand-Accelerated Catalysis in Palladium(II)-Mediated C–H Funtionalisation."A lingering pr...
Part I: "Ligand-Accelerated Catalysis in Palladium(II)-Mediated C–H Funtionalisation."A lingering pr...
The transition-metal-catalyzed direct C–H bond fluorination is an attractive synthetic tool toward t...
A selection of carbon-fluorine bond-forming reactions is presented with particular focus on transiti...
A selection of carbon-fluorine bond-forming reactions is presented with particular focus on transiti...
The formation of C–F bonds has long been considered a challenging transformation and C–F bonds commo...
A selection of carbon-fluorine bond-forming reactions is presented with particular focus on transiti...
The first catalytic allylic C–H fluorination reaction using a nucleophilic fluoride source is report...
Conspectus: Aromatic fluorides are prevalent in both agrochemical and pharmaceutical agents. However...
Aryl fluorides are widely used in the pharmaceutical and agrochemical industries1,2, and recent adva...
The transition-metal-catalyzed direct C–H bond fluorination is an attractive synthetic tool toward t...
The transition-metal-catalyzed direct C–H bond fluorination is an attractive synthetic tool toward t...
Late-stage fluorination reactions aim to reduce the synthetic limitations of conventional organofluo...
Late-stage fluorination reactions aim to reduce the synthetic limitations of conventional organofluo...
This Review summarizes the advances in fluorination via C(sp2)–H and C(sp3)–H activation. Transition...
Part I: "Ligand-Accelerated Catalysis in Palladium(II)-Mediated C–H Funtionalisation."A lingering pr...
Part I: "Ligand-Accelerated Catalysis in Palladium(II)-Mediated C–H Funtionalisation."A lingering pr...
The transition-metal-catalyzed direct C–H bond fluorination is an attractive synthetic tool toward t...
A selection of carbon-fluorine bond-forming reactions is presented with particular focus on transiti...
A selection of carbon-fluorine bond-forming reactions is presented with particular focus on transiti...
The formation of C–F bonds has long been considered a challenging transformation and C–F bonds commo...
A selection of carbon-fluorine bond-forming reactions is presented with particular focus on transiti...
The first catalytic allylic C–H fluorination reaction using a nucleophilic fluoride source is report...
Conspectus: Aromatic fluorides are prevalent in both agrochemical and pharmaceutical agents. However...