The enantioselective catalytic hydrogenation of N-(3,4-dihydronaphthalen-2- yl) amides (1) with rhodium catalysts bearing phosphine-phosphite ligands 4 has been studied. A wide catalyst screening, facilitated by the modular structure of 4, has found a highly enantioselective catalyst for this reaction. This catalyst gives a 93% ee in the hydrogenation of 1a and also produces high enantioselectivities, ranging from 83 to 93% ee, in the hydrogenation of several OMe- and Br-substituted substrates. In contrast, the structurally related enol esters 2 are very reluctant to undergo hydrogenation. A coordination study of the representative enamide 1d has shown an unusual η6-arene coordination mode, over the typical O,C,C chelating mode for enamides...
Asymmetric hydrogenation is a significant research field in modern catalytic organic synthesis. In t...
Monodentate phosphoramidites based on BINOL or substituted BINOL are excellent ligands for the rhodi...
Monodentate phosphoramidites based on BINOL or substituted BINOL are excellent ligands for the rhodi...
Chiral monophosphites derived from BINOL are cheap and efficient ligands in the Rh-catalyzed hydroge...
A library of 19 binol-derived chiral monophosphites that contain a phthalic acid diamide group (Phth...
Nature makes wide use of non-covalent interactions to build its complex supramolecular architectures...
The monodentate phosphoramidite MonoPhos has been used in the rhodium-catalysed asymmetric hydrogena...
The asymmetric hydrogenation of prochiral olefins is one of the most extensively studied reactions i...
An easily prepared and highly efficient monodentate phosphoramidite ligand derived from BINOL, (S)2,...
A series of new chiral phosphine-aminophosphine ligands have been prepared via a two- or three-step ...
Herein is described a practical method of preparing enantiopure rhodium(I) complexes that can be ...
A second generation of phosphine–phosphite (P–OP) ligands, incorporating a more sterically bulky pho...
The new unsymmetrical, optically active ligands 1,2-C2H4(PPh2)(2'R,5'R-2',5'-dimethylphospholanyl) (...
We report on a new class of P-O monophosphite ligands (designated 3a-k) with a double six-membered-r...
The unsymmetrical, optically active ligands 1,2-C6H4(PPh2)((R,R)-2,5-dimethylphospholanyl) (1a) and ...
Asymmetric hydrogenation is a significant research field in modern catalytic organic synthesis. In t...
Monodentate phosphoramidites based on BINOL or substituted BINOL are excellent ligands for the rhodi...
Monodentate phosphoramidites based on BINOL or substituted BINOL are excellent ligands for the rhodi...
Chiral monophosphites derived from BINOL are cheap and efficient ligands in the Rh-catalyzed hydroge...
A library of 19 binol-derived chiral monophosphites that contain a phthalic acid diamide group (Phth...
Nature makes wide use of non-covalent interactions to build its complex supramolecular architectures...
The monodentate phosphoramidite MonoPhos has been used in the rhodium-catalysed asymmetric hydrogena...
The asymmetric hydrogenation of prochiral olefins is one of the most extensively studied reactions i...
An easily prepared and highly efficient monodentate phosphoramidite ligand derived from BINOL, (S)2,...
A series of new chiral phosphine-aminophosphine ligands have been prepared via a two- or three-step ...
Herein is described a practical method of preparing enantiopure rhodium(I) complexes that can be ...
A second generation of phosphine–phosphite (P–OP) ligands, incorporating a more sterically bulky pho...
The new unsymmetrical, optically active ligands 1,2-C2H4(PPh2)(2'R,5'R-2',5'-dimethylphospholanyl) (...
We report on a new class of P-O monophosphite ligands (designated 3a-k) with a double six-membered-r...
The unsymmetrical, optically active ligands 1,2-C6H4(PPh2)((R,R)-2,5-dimethylphospholanyl) (1a) and ...
Asymmetric hydrogenation is a significant research field in modern catalytic organic synthesis. In t...
Monodentate phosphoramidites based on BINOL or substituted BINOL are excellent ligands for the rhodi...
Monodentate phosphoramidites based on BINOL or substituted BINOL are excellent ligands for the rhodi...