The metal–ligand cooperative activation of CO2 with pyridine-based ruthenium PNP pincer catalysts leads to pronounced inhibition of the activity in the catalytic CO2 hydrogenation to formic acid. The addition of water restores catalytic performance by activating alternative reaction pathways and leads to unprecedented Ru-catalyzed CO2 hydrogenation activity. The mechanism of the underlying chemical transformations is proposed on the basis of DFT calculations, kinetic experiments, and NMR reactivity studies
This paper investigates the effects of substituents in PNP-type ruthenium complexes in the catalytic...
Accepted manuscriptThis work investigates the hydrogenation of carbon dioxide to formate catalysed b...
The novel [Ru(Acriphos)(PPh3)(Cl)(PhCO2)] [1; Acriphos=4,5-bis(diphenylphosphino)acridine] is an exc...
The metal–ligand cooperative activation of CO2 with pyridine-based ruthenium PNP pincer catalysts le...
The metal–ligand cooperative activation of CO<sub>2</sub> with pyridine-based ruthenium PNP pincer c...
A strong promoting effect of water in the catalytic hydrogenation of CO2 to formic acid with the sol...
Metal-ligand cooperative properties of a bis-N-heterocyclic carbene ruthenium CNC-pincer catalyst an...
The reaction mechanism of CO2 hydrogenation by pyridine-based Ru-PNP catalyst in the presence of DBU...
Activation of homogeneous catalysts is an important step in ensuring efficient operation of any cata...
Activation of homogeneous catalysts is an important step in ensuring efficient operation of any cata...
Reaction pathways during CO2 hydrogenation catalyzed by the Ru dihydride complex [Ru(dmpe)2H2] (dmpe...
The hydrogenation of carbon dioxide to formate is an intriguing reaction from both an environmental ...
The hydrogenation of carbon dioxide to formate is an intriguing reaction from both an environmental ...
Metal–ligand cooperative properties of a bis-N-heterocyclic carbene ruthenium CNC pincer catalyst an...
Catalytic hydrogenation of CO 2 to formic acid with the (solvento)metal hydride complex, TpRu(PPh 3)...
This paper investigates the effects of substituents in PNP-type ruthenium complexes in the catalytic...
Accepted manuscriptThis work investigates the hydrogenation of carbon dioxide to formate catalysed b...
The novel [Ru(Acriphos)(PPh3)(Cl)(PhCO2)] [1; Acriphos=4,5-bis(diphenylphosphino)acridine] is an exc...
The metal–ligand cooperative activation of CO2 with pyridine-based ruthenium PNP pincer catalysts le...
The metal–ligand cooperative activation of CO<sub>2</sub> with pyridine-based ruthenium PNP pincer c...
A strong promoting effect of water in the catalytic hydrogenation of CO2 to formic acid with the sol...
Metal-ligand cooperative properties of a bis-N-heterocyclic carbene ruthenium CNC-pincer catalyst an...
The reaction mechanism of CO2 hydrogenation by pyridine-based Ru-PNP catalyst in the presence of DBU...
Activation of homogeneous catalysts is an important step in ensuring efficient operation of any cata...
Activation of homogeneous catalysts is an important step in ensuring efficient operation of any cata...
Reaction pathways during CO2 hydrogenation catalyzed by the Ru dihydride complex [Ru(dmpe)2H2] (dmpe...
The hydrogenation of carbon dioxide to formate is an intriguing reaction from both an environmental ...
The hydrogenation of carbon dioxide to formate is an intriguing reaction from both an environmental ...
Metal–ligand cooperative properties of a bis-N-heterocyclic carbene ruthenium CNC pincer catalyst an...
Catalytic hydrogenation of CO 2 to formic acid with the (solvento)metal hydride complex, TpRu(PPh 3)...
This paper investigates the effects of substituents in PNP-type ruthenium complexes in the catalytic...
Accepted manuscriptThis work investigates the hydrogenation of carbon dioxide to formate catalysed b...
The novel [Ru(Acriphos)(PPh3)(Cl)(PhCO2)] [1; Acriphos=4,5-bis(diphenylphosphino)acridine] is an exc...