Rational design of catalysts for asymmetric transformations is a longstanding challenge in the field of catalysis. In the current contribution we report a catalyst in which a hydrogen bond between the substrate and the catalyst plays a crucial role in determining the selectivity and the rate of the catalytic hydrogenation reaction, as is evident from a combination of experiments and DFT calculations. Detailed insight allowed in silico mutation of the catalyst such that only this hydrogen bond interaction is stronger, predicting that the new catalyst is faster. Indeed, we experimentally confirmed that optimization of the catalyst can be realized by increasing the hydrogen bond strength of this interaction by going from a urea to phosphine ox...
The combination of monodentate ligands in the rhodium-catalysed enantioselective hydrogenation enabl...
The combination of monodentate ligands in the rhodium-catalysed enantioselective hydrogenation enabl...
For a more general implementation of asymmetric catalysis in the production of fine chemicals, the s...
This thesis describes a detailed study of a catalytic system in which hydrogen bonds are formed betw...
The reaction mechanism of the asymmetric hydrogenation of functionalized alkenes catalyzed by a supr...
The reaction mechanism of the asymmetric hydrogenation of functionalized alkenes catalyzed by a supr...
A procedure is described for the automated screening and lead optimization of a supramolecular-ligan...
H bonds make the catalysts! A single hydrogen bond between ligands coordinated to a rhodium center i...
Hydrogen bonding has been widely observed in biosynthesis and enzyme catalysis. It plays an importan...
Density functional theory calculations are employed to study the asymmetric transfer hydrogenation o...
Density functional theory calculations are employed to study the asymmetric transfer hydrogenation o...
Rh-catalyzed asymmetric hydrogenation has emerged as a powerful tool for the manufacturing of chiral...
Rh-catalyzed asymmetric hydrogenation has emerged as a powerful tool for the manufacturing of chiral...
Asymmetric hydrogenation is a significant research field in modern catalytic organic synthesis. In t...
A relationship between the structure of biaryl atropisomeric diphosphine ligands and their efficienc...
The combination of monodentate ligands in the rhodium-catalysed enantioselective hydrogenation enabl...
The combination of monodentate ligands in the rhodium-catalysed enantioselective hydrogenation enabl...
For a more general implementation of asymmetric catalysis in the production of fine chemicals, the s...
This thesis describes a detailed study of a catalytic system in which hydrogen bonds are formed betw...
The reaction mechanism of the asymmetric hydrogenation of functionalized alkenes catalyzed by a supr...
The reaction mechanism of the asymmetric hydrogenation of functionalized alkenes catalyzed by a supr...
A procedure is described for the automated screening and lead optimization of a supramolecular-ligan...
H bonds make the catalysts! A single hydrogen bond between ligands coordinated to a rhodium center i...
Hydrogen bonding has been widely observed in biosynthesis and enzyme catalysis. It plays an importan...
Density functional theory calculations are employed to study the asymmetric transfer hydrogenation o...
Density functional theory calculations are employed to study the asymmetric transfer hydrogenation o...
Rh-catalyzed asymmetric hydrogenation has emerged as a powerful tool for the manufacturing of chiral...
Rh-catalyzed asymmetric hydrogenation has emerged as a powerful tool for the manufacturing of chiral...
Asymmetric hydrogenation is a significant research field in modern catalytic organic synthesis. In t...
A relationship between the structure of biaryl atropisomeric diphosphine ligands and their efficienc...
The combination of monodentate ligands in the rhodium-catalysed enantioselective hydrogenation enabl...
The combination of monodentate ligands in the rhodium-catalysed enantioselective hydrogenation enabl...
For a more general implementation of asymmetric catalysis in the production of fine chemicals, the s...