The activation of C–H bonds through catalytic reactions using transition metals is an important challenge in organic chemistry in which the intermediates are related to those produced in the classical cross-coupling reactions. As part of our research program devoted to the development of metal-catalyzed reactions using indium organometallics, a protocol for the C–H activation and C–C coupling of 2-arylpyridines with triorganoindium reagents under Rh(I) catalysis is reported. Under the optimized conditions, we found that Me3In and Ar3In reagents reacted with 2-arylpyridines and related compounds in the presence of Rh(PPh3)3Cl, in PhCl/THF (9:1), at 120 °C for 48 h, to afford the ortho-coupling products in moderate to go...
A new rhodium(III)-catalyzed protocol for C–H activation and functionalization of poorly reactive p...
Rhodium(III)-Catalyzed C-C Coupling between Arenes and Aziridines by C-H Activatio
Imidate esters and diazo compounds have been established as bifunctional substrates for the construc...
The activation of C–H bonds through catalytic reactions using transition metals is an importan...
[Abstract] The activation of C–H bonds through catalytic reactions using transition metals is an imp...
AbstractRhodium(I)-catalyzed C–P cross-coupling reaction with aryl iodides and acylphosphines was di...
Transition metal catalyzed C-C bond formation via C-H bond activation is currently one of the most i...
A synthetic method for highly substituted pyridinium salts from the multicomponent reaction of vinyl...
A synthetic method for highly substituted pyridinium salts from the multicomponent reaction of vinyl...
A new catalytic methodology has been developed for the synthesis of heteroaryled pyridines via a rho...
A novel method for the synthesis of acylmethyl-substituted 2-arylpyridine derivatives using 3-aryl-2...
Selective C–H bond activation is a highly demanding task due to the presence of multiple C–H bonds o...
[Abstract] Bench-stable solid triorganoindium compounds have been prepared by coordination with 4-(d...
A new rhodium(III)-catalyzed protocol for C–H activation and functionalization of poorly reactive p...
Carbon–Hydrogen bond (C–H) activation offers chemists a direct route to perform chemical transformat...
A new rhodium(III)-catalyzed protocol for C–H activation and functionalization of poorly reactive p...
Rhodium(III)-Catalyzed C-C Coupling between Arenes and Aziridines by C-H Activatio
Imidate esters and diazo compounds have been established as bifunctional substrates for the construc...
The activation of C–H bonds through catalytic reactions using transition metals is an importan...
[Abstract] The activation of C–H bonds through catalytic reactions using transition metals is an imp...
AbstractRhodium(I)-catalyzed C–P cross-coupling reaction with aryl iodides and acylphosphines was di...
Transition metal catalyzed C-C bond formation via C-H bond activation is currently one of the most i...
A synthetic method for highly substituted pyridinium salts from the multicomponent reaction of vinyl...
A synthetic method for highly substituted pyridinium salts from the multicomponent reaction of vinyl...
A new catalytic methodology has been developed for the synthesis of heteroaryled pyridines via a rho...
A novel method for the synthesis of acylmethyl-substituted 2-arylpyridine derivatives using 3-aryl-2...
Selective C–H bond activation is a highly demanding task due to the presence of multiple C–H bonds o...
[Abstract] Bench-stable solid triorganoindium compounds have been prepared by coordination with 4-(d...
A new rhodium(III)-catalyzed protocol for C–H activation and functionalization of poorly reactive p...
Carbon–Hydrogen bond (C–H) activation offers chemists a direct route to perform chemical transformat...
A new rhodium(III)-catalyzed protocol for C–H activation and functionalization of poorly reactive p...
Rhodium(III)-Catalyzed C-C Coupling between Arenes and Aziridines by C-H Activatio
Imidate esters and diazo compounds have been established as bifunctional substrates for the construc...