Previously reported heterobimetallic rhodium-aluminum and iridium-aluminum alkyl complexes are shown to activate hydrogen, generating the corresponding alkane. Kinetic data indicate a mechanistic difference between the iridium- and rhodium-based systems. In both cases the transition metal is an active participant in the release of alkane from the aluminum center. For iridium-aluminum species, experimental mechanistic data suggest that multiple pathways occur concomitantly with each other: one being the oxidative addition of hydrogen followed by proton transfer resulting in alkane generation. Computational data indicate a reasonable barrier to formation of an iridium dihydride intermediate observed experimentally. In the case of the rhodium-...
A series of half-sandwich complexes of iridium, rhodium, and ruthenium are shown to be active cataly...
A series of half-sandwich complexes of iridium, rhodium, and ruthenium are shown to be active cataly...
We report the addition of M–H bonds (M = Al, Zn, Mg) to a Rh(III) intermediate generated from the re...
The investigation and development of heterobimetallic systems has seen a meteoric surge over the pas...
The mechanism of olein hydrogenation reactions catalyzed by Wilkinson\u27s catalyst, (PPh3)3RhCl, ha...
International audienceWe report an original alkane elimination approach, entailing the protonolysis ...
Reactions of the atomic transition metal cations, Co^+, Rh^+, and Ir^+, with H_2, CH_4, and C_2H_6 i...
The reactions of a series of b-diketiminate stabilised aluminium dihydrides with ruthenium bis(phosp...
Cooperative ligand effects of transition metal complexes have a profound impact on the reaction outc...
Ironically, in nearly thirty years since Bergman and Graham first observed organoiridium activate me...
A kinetic study was undertaken to investigate the potentiality of rhodium chioro complexes containin...
Metal-alkane complexes are believed to be key intermediates in C-H activation processes. The C-H ó b...
On the basis of density functional theory and coupled-cluster CCSD(T) calculations we propose a mech...
The primary objective for this project is to identify metal species capable of reacting with the C_H...
Kinetic studies of a number of interesting and significant reactions involving activation of molecul...
A series of half-sandwich complexes of iridium, rhodium, and ruthenium are shown to be active cataly...
A series of half-sandwich complexes of iridium, rhodium, and ruthenium are shown to be active cataly...
We report the addition of M–H bonds (M = Al, Zn, Mg) to a Rh(III) intermediate generated from the re...
The investigation and development of heterobimetallic systems has seen a meteoric surge over the pas...
The mechanism of olein hydrogenation reactions catalyzed by Wilkinson\u27s catalyst, (PPh3)3RhCl, ha...
International audienceWe report an original alkane elimination approach, entailing the protonolysis ...
Reactions of the atomic transition metal cations, Co^+, Rh^+, and Ir^+, with H_2, CH_4, and C_2H_6 i...
The reactions of a series of b-diketiminate stabilised aluminium dihydrides with ruthenium bis(phosp...
Cooperative ligand effects of transition metal complexes have a profound impact on the reaction outc...
Ironically, in nearly thirty years since Bergman and Graham first observed organoiridium activate me...
A kinetic study was undertaken to investigate the potentiality of rhodium chioro complexes containin...
Metal-alkane complexes are believed to be key intermediates in C-H activation processes. The C-H ó b...
On the basis of density functional theory and coupled-cluster CCSD(T) calculations we propose a mech...
The primary objective for this project is to identify metal species capable of reacting with the C_H...
Kinetic studies of a number of interesting and significant reactions involving activation of molecul...
A series of half-sandwich complexes of iridium, rhodium, and ruthenium are shown to be active cataly...
A series of half-sandwich complexes of iridium, rhodium, and ruthenium are shown to be active cataly...
We report the addition of M–H bonds (M = Al, Zn, Mg) to a Rh(III) intermediate generated from the re...