Primary aliphatic amines which are ubiquitous in natural products, traditionally considered as inert to substitution reactions. Recent studies clearly demonstrated that the aliphatic deaminative coupling chemistry can be used to make valuable scaffolds through C–N bond activation on transition metal complexes. The catalytic system generated in situ from the tetranuclear Ru–H complex with a catechol ligand (2-9/2-16) and independently synthesized ruthenium catecholate complex 2-11 was found to be effective for the direct deaminative coupling of primary amines. The catalytic system formed in-situ from the reaction of cationic Ru–H complex 2-10 with 3,4,5,6-tetrachloro-1,2-benzoquinone 2-12 was found to mediate a regioselective deaminative cou...
Transition metal-catalyzed C-H bond activation allows direct functionalization of the ubiquitous C-H...
The cationic ruthenium hydride complex [(PCy3)2(CO)(CH3CN)2RuH]+BF4- was found to be a highly effect...
The cationic ruthenium hydride complex [(PCy3)2(CO)(CH3CN)2RuH]+BF4- was found to be a highly effect...
C–N bond activation via transition-metal catalyst has attracted much attention during the past two d...
C–N bond activation via transition-metal catalyst has attracted much attention during the past two d...
C–N bond activation via transition-metal catalyst has attracted much attention during the past two d...
The catalytic system generated in situ from the tetranuclear Ru–H complex with a catechol ligand (1/...
Transition metal catalyzed selective C-C, C-N and C-O bond activation reactions are fundamentally im...
Transition metal catalyzed selective C-C, C-N and C-O bond activation reactions are fundamentally im...
Transition metal catalyzed selective C-C, C-N and C-O bond activation reactions are fundamentally im...
Transition metal catalyzed selective C–C and C–N bond activation reactions emerged as an effective s...
Transition metal catalyzed selective C–C and C–N bond activation reactions emerged as an effective s...
Transition metal-catalyzed selective CH, CC and CN bond activation reactions represent a challenging...
Transition metal-catalyzed selective CH, CC and CN bond activation reactions represent a challenging...
A highly selective ruthenium-catalyzed C-H activation/annulation of alkyne-tethered N-alkoxybenzamid...
Transition metal-catalyzed C-H bond activation allows direct functionalization of the ubiquitous C-H...
The cationic ruthenium hydride complex [(PCy3)2(CO)(CH3CN)2RuH]+BF4- was found to be a highly effect...
The cationic ruthenium hydride complex [(PCy3)2(CO)(CH3CN)2RuH]+BF4- was found to be a highly effect...
C–N bond activation via transition-metal catalyst has attracted much attention during the past two d...
C–N bond activation via transition-metal catalyst has attracted much attention during the past two d...
C–N bond activation via transition-metal catalyst has attracted much attention during the past two d...
The catalytic system generated in situ from the tetranuclear Ru–H complex with a catechol ligand (1/...
Transition metal catalyzed selective C-C, C-N and C-O bond activation reactions are fundamentally im...
Transition metal catalyzed selective C-C, C-N and C-O bond activation reactions are fundamentally im...
Transition metal catalyzed selective C-C, C-N and C-O bond activation reactions are fundamentally im...
Transition metal catalyzed selective C–C and C–N bond activation reactions emerged as an effective s...
Transition metal catalyzed selective C–C and C–N bond activation reactions emerged as an effective s...
Transition metal-catalyzed selective CH, CC and CN bond activation reactions represent a challenging...
Transition metal-catalyzed selective CH, CC and CN bond activation reactions represent a challenging...
A highly selective ruthenium-catalyzed C-H activation/annulation of alkyne-tethered N-alkoxybenzamid...
Transition metal-catalyzed C-H bond activation allows direct functionalization of the ubiquitous C-H...
The cationic ruthenium hydride complex [(PCy3)2(CO)(CH3CN)2RuH]+BF4- was found to be a highly effect...
The cationic ruthenium hydride complex [(PCy3)2(CO)(CH3CN)2RuH]+BF4- was found to be a highly effect...