A series of chiral tertiary phosphine ligands have been prepared via two synthetic approaches, namely through the optical resolution of racemic phosphines, and the asymmetric hydrophosphination reaction of enones with secondary phosphines promoted by chiral palladacycles. The ortho-palladation of the chiral phosphine ligands resulted in the formation of optically active CP-palladacycles containing a five-membered ring structure. The properties of the newly synthesized phosphapalladacycles were studied by NMR spectroscopy and single crystal X-ray crystallography. The potential use of the phosphapalladacycles as catalysts was explored in the enantioselective addition of various diarylphosphines to benzoquinone for generating P-stereogenic dia...
Palladacycle-catalyzed asymmetric hydrophosphination of achiral heterobicyclic alkenes offers an un...
The first asymmetric phospha-Michael addition of diarylphosphines to N-enoyl phthalimides has been d...
Chiral phosphines are central to the development of enantioselective organic transformations because...
A series of chiral tertiary phosphine ligands have been prepared via two synthetic approaches, namel...
Chiral phosphine ligands are well-established as exceptional synthetic tools for various asymmetric ...
The significance of chiral phosphines is well-known in the field of Chemistry; yet conventional appr...
This thesis, consisting of three chapters, describes the development of asymmetric C-P bond formatio...
This thesis, consisting of three chapters, describes the development of asymmetric C-P bond formatio...
A highly reactive and stereoselective hydrophosphination of enones catalyzed by palladacycles for th...
A highly reactive and stereoselective hydrophosphination of enones catalyzed by palladacycles for th...
A chiral palladacycle-promoted enantioselective asymmetric hydrophosphination of substituted methyli...
A chiral palladacycle-promoted enantioselective asymmetric hydrophosphination of substituted methyli...
A series of optically active tertiary phosphine compounds were prepared via catalytic asymmetric hyd...
Over the past decades, the design, synthesis of chiral diphosphines in the field of asymmetric catal...
Over the past decades, the design, synthesis of chiral diphosphines in the field of asymmetric catal...
Palladacycle-catalyzed asymmetric hydrophosphination of achiral heterobicyclic alkenes offers an un...
The first asymmetric phospha-Michael addition of diarylphosphines to N-enoyl phthalimides has been d...
Chiral phosphines are central to the development of enantioselective organic transformations because...
A series of chiral tertiary phosphine ligands have been prepared via two synthetic approaches, namel...
Chiral phosphine ligands are well-established as exceptional synthetic tools for various asymmetric ...
The significance of chiral phosphines is well-known in the field of Chemistry; yet conventional appr...
This thesis, consisting of three chapters, describes the development of asymmetric C-P bond formatio...
This thesis, consisting of three chapters, describes the development of asymmetric C-P bond formatio...
A highly reactive and stereoselective hydrophosphination of enones catalyzed by palladacycles for th...
A highly reactive and stereoselective hydrophosphination of enones catalyzed by palladacycles for th...
A chiral palladacycle-promoted enantioselective asymmetric hydrophosphination of substituted methyli...
A chiral palladacycle-promoted enantioselective asymmetric hydrophosphination of substituted methyli...
A series of optically active tertiary phosphine compounds were prepared via catalytic asymmetric hyd...
Over the past decades, the design, synthesis of chiral diphosphines in the field of asymmetric catal...
Over the past decades, the design, synthesis of chiral diphosphines in the field of asymmetric catal...
Palladacycle-catalyzed asymmetric hydrophosphination of achiral heterobicyclic alkenes offers an un...
The first asymmetric phospha-Michael addition of diarylphosphines to N-enoyl phthalimides has been d...
Chiral phosphines are central to the development of enantioselective organic transformations because...