This thesis describes mechanistic studies, rational ligand design, and synthesis of asymmetric transition metal catalysts. The topics addressed concerned [Papers I-VII]: [I] The asymmetric addition of diethyl zinc to N-(diphenylphosphinoyl)benzalimine catalyzed by bicyclic 2-azanorbornyl-3-methanols was studied. An efficient route to both diastereomers of new bicyclic 2-azanorbornyl-3-methanols with an additional chiral center was developed, in the best case 97% ee was obtained with these ligands. The experimental results were rationalized by a computational DFT-study. [II] An aza-Diels-Alder reaction of cyclopentadiene with chiral heterocyclic imines derived from (S)-1-phenylethylamine and different heteroaromatic aldehydes was developed. ...
Small molecule hydrogen bond donors have emerged as versatile catalysts in asymmetric synthesis. Wit...
Small molecule hydrogen bond donors have emerged as versatile catalysts in asymmetric synthesis. Wit...
The products of organic synthesis affect countless aspects of our everyday lives, from our medicines...
This thesis describes mechanistic studies, rational ligand design, and synthesis of asymmetric trans...
This thesis deals with synthetically modified chiral molecules and their application in asymmetric c...
Transition metal catalyzed hydrogenations are among the most powerful and direct approaches for the ...
This thesis discusses the preparation and use of transition-metal catalysts for selective organic ch...
In this thesis the design and synthesis of chiral ligands for transition-metal catalyzed asymmetric ...
The work described in this thesis concerns the design, synthesis and evaluation of new chiral nonrac...
This thesis summarizes the author’s graduate research on phosphorus ligands synthesis and catalytic ...
This thesis describes synthesis of new chiral N,P ligands and their evaluation in two types of asymm...
This thesis describes synthesis of new chiral N,P ligands and their evaluation in two types of asymm...
This thesis describes synthesis of new chiral N,P ligands and their evaluation in two types of asymm...
This thesis describes synthesis of new chiral N,P ligands and their evaluation in two types of asymm...
This thesis describes the synthesis and application of new chiral bicyclic ligands and their applica...
Small molecule hydrogen bond donors have emerged as versatile catalysts in asymmetric synthesis. Wit...
Small molecule hydrogen bond donors have emerged as versatile catalysts in asymmetric synthesis. Wit...
The products of organic synthesis affect countless aspects of our everyday lives, from our medicines...
This thesis describes mechanistic studies, rational ligand design, and synthesis of asymmetric trans...
This thesis deals with synthetically modified chiral molecules and their application in asymmetric c...
Transition metal catalyzed hydrogenations are among the most powerful and direct approaches for the ...
This thesis discusses the preparation and use of transition-metal catalysts for selective organic ch...
In this thesis the design and synthesis of chiral ligands for transition-metal catalyzed asymmetric ...
The work described in this thesis concerns the design, synthesis and evaluation of new chiral nonrac...
This thesis summarizes the author’s graduate research on phosphorus ligands synthesis and catalytic ...
This thesis describes synthesis of new chiral N,P ligands and their evaluation in two types of asymm...
This thesis describes synthesis of new chiral N,P ligands and their evaluation in two types of asymm...
This thesis describes synthesis of new chiral N,P ligands and their evaluation in two types of asymm...
This thesis describes synthesis of new chiral N,P ligands and their evaluation in two types of asymm...
This thesis describes the synthesis and application of new chiral bicyclic ligands and their applica...
Small molecule hydrogen bond donors have emerged as versatile catalysts in asymmetric synthesis. Wit...
Small molecule hydrogen bond donors have emerged as versatile catalysts in asymmetric synthesis. Wit...
The products of organic synthesis affect countless aspects of our everyday lives, from our medicines...