The mechanism for complete dehydrogenation of aqueous methanol to CO2 and three equivalents of H2 catalyzed by [Ru(trop2dad)] was investigated with DFT (trop2dad = 1,4-bis(5H-dibenzo[a,d]cyclohepten-5-yl)-1,4-diazabuta-1,3-diene). To date, this is the only catalyst that promotes the acceptorless dehydrogenation of aqueous methanol in homogeneous phase under mild conditions without the addition of an additive (base, acid, or a secondary catalyst). A detailed understanding of the mechanism of this transformation may therefore be of significant importance for the conversion of liquid organic fuels. Previous computational studies using simplified models of the catalyst suggested entirely ligand-centered reaction pathways with rather high-energy...
Homogeneous ruthenium catalysed methanol dehydrogenation could become a key reaction for hydrogen pr...
Homogeneous ruthenium catalysed methanol dehydrogenation could become a key reaction for hydrogen pr...
Homogeneous ruthenium catalysed methanol dehydrogenation could become a key reaction for hydrogen pr...
The mechanism for complete dehydrogenation of aqueous methanol to CO2 and three equivalents of H2 ca...
The mechanism for complete dehydrogenation of aqueous methanol to CO2 and three equivalents of H2 ca...
Herein we provide mechanistic insights into the dehydrogenation of aqueous methanol catalysed by the...
Herein we provide mechanistic insights into the dehydrogenation of aqueous methanol catalysed by the...
In this work, the reaction mechanism for the conversion of CO2 and H2 to methanol has been researche...
Insights into the mechanism of the catalytic cycle for methanol dehydrogenation catalyzed by a highl...
We report a comprehensive density functional theory (DFT) study of the mechanism of the methanol deh...
In this work, the reaction mechanism for the conversion of CO2 and H2 to methanol has been researche...
Insights into the mechanism of the catalytic cycle for methanol dehydrogenation catalyzed by a highl...
Insights into the mechanism of the catalytic cycle for methanol dehydrogenation catalyzed by a highl...
We report a comprehensive density functional theory (DFT) study of the mechanism of the methanol deh...
Ruthenium PNP complex <b>1a</b> (RuH(CO)Cl(HN(C<sub>2</sub>H<sub>4</sub>P<i>i</i>-Pr<sub>2</sub>...
Homogeneous ruthenium catalysed methanol dehydrogenation could become a key reaction for hydrogen pr...
Homogeneous ruthenium catalysed methanol dehydrogenation could become a key reaction for hydrogen pr...
Homogeneous ruthenium catalysed methanol dehydrogenation could become a key reaction for hydrogen pr...
The mechanism for complete dehydrogenation of aqueous methanol to CO2 and three equivalents of H2 ca...
The mechanism for complete dehydrogenation of aqueous methanol to CO2 and three equivalents of H2 ca...
Herein we provide mechanistic insights into the dehydrogenation of aqueous methanol catalysed by the...
Herein we provide mechanistic insights into the dehydrogenation of aqueous methanol catalysed by the...
In this work, the reaction mechanism for the conversion of CO2 and H2 to methanol has been researche...
Insights into the mechanism of the catalytic cycle for methanol dehydrogenation catalyzed by a highl...
We report a comprehensive density functional theory (DFT) study of the mechanism of the methanol deh...
In this work, the reaction mechanism for the conversion of CO2 and H2 to methanol has been researche...
Insights into the mechanism of the catalytic cycle for methanol dehydrogenation catalyzed by a highl...
Insights into the mechanism of the catalytic cycle for methanol dehydrogenation catalyzed by a highl...
We report a comprehensive density functional theory (DFT) study of the mechanism of the methanol deh...
Ruthenium PNP complex <b>1a</b> (RuH(CO)Cl(HN(C<sub>2</sub>H<sub>4</sub>P<i>i</i>-Pr<sub>2</sub>...
Homogeneous ruthenium catalysed methanol dehydrogenation could become a key reaction for hydrogen pr...
Homogeneous ruthenium catalysed methanol dehydrogenation could become a key reaction for hydrogen pr...
Homogeneous ruthenium catalysed methanol dehydrogenation could become a key reaction for hydrogen pr...