International audienceA facile C-H activation and functionalization of aromatic imines is presented using low-valent cobalt catalysts. Using Co(PMe3)(4) as catalyst we have developed an efficient and simple protocol for the C-H/hydroarylation of alkynes with an anti selectivity. Deuterium-labeling experiments, DFT calculations coupled with the use of a well-defined catalyst have for the first time shed light on the elusive black box of cobalt catalyzed C-H functionalization
This thesis has focused on the use of well-defined low-valent cobalt complexes of the family RCo(PMe...
This review provides a perspective on C-H bond functionalization mediated by cobalt complexes used i...
This Ph.D. dissertation describes the synthesis and characterization of bench-top stable aryl-Co(III...
A facile C–H activation and functionalization of aromatic imines is presented using low-valent cobal...
A facile C–H activation and functionalization of aromatic imines is presented using low-valent cobal...
A facile C–H activation and functionalization of aromatic imines is presented using low-valent cobal...
A facile C–H activation and functionalization of aromatic imines is presented using low-valent cobal...
A facile C–H activation and functionalization of aromatic imines is presented using low-valent cobal...
A facile C–H activation and functionalization of aromatic imines is presented using low-valent cobal...
Over the past two decades, extensive investigations into transition metal-catalyzed C–H activation p...
Transition metal-catalyzed C–H activation has become a powerful approach for atom- and step-economic...
As an earth-abundant first-row transition metal, cobalt catalysts offer a broad range of economical ...
During the past decades, transition metal-catalyzed chelation-assisted C–H bond functionalization ha...
This thesis has focused on the use of well-defined low-valent cobalt complexes of the family RCo(PMe...
This thesis has focused on the use of well-defined low-valent cobalt complexes of the family RCo(PMe...
This thesis has focused on the use of well-defined low-valent cobalt complexes of the family RCo(PMe...
This review provides a perspective on C-H bond functionalization mediated by cobalt complexes used i...
This Ph.D. dissertation describes the synthesis and characterization of bench-top stable aryl-Co(III...
A facile C–H activation and functionalization of aromatic imines is presented using low-valent cobal...
A facile C–H activation and functionalization of aromatic imines is presented using low-valent cobal...
A facile C–H activation and functionalization of aromatic imines is presented using low-valent cobal...
A facile C–H activation and functionalization of aromatic imines is presented using low-valent cobal...
A facile C–H activation and functionalization of aromatic imines is presented using low-valent cobal...
A facile C–H activation and functionalization of aromatic imines is presented using low-valent cobal...
Over the past two decades, extensive investigations into transition metal-catalyzed C–H activation p...
Transition metal-catalyzed C–H activation has become a powerful approach for atom- and step-economic...
As an earth-abundant first-row transition metal, cobalt catalysts offer a broad range of economical ...
During the past decades, transition metal-catalyzed chelation-assisted C–H bond functionalization ha...
This thesis has focused on the use of well-defined low-valent cobalt complexes of the family RCo(PMe...
This thesis has focused on the use of well-defined low-valent cobalt complexes of the family RCo(PMe...
This thesis has focused on the use of well-defined low-valent cobalt complexes of the family RCo(PMe...
This review provides a perspective on C-H bond functionalization mediated by cobalt complexes used i...
This Ph.D. dissertation describes the synthesis and characterization of bench-top stable aryl-Co(III...