Small molecule hydrogen bond donors have emerged as versatile catalysts in asymmetric synthesis. Within this class, chiral BINOL phosphoric acid is regarded as one of the pioneer catalysts used in several asymmetric transformations. The ability of the catalyst to activate the substrates could be controlled in two different ways. (1) Dual activation/bifunctional activation of substrate by hydrogen bond interactions or ion pairing with phosphoric acid or (2) By forming chiral BINOL phosphate metal complex that could significantly alter the interactions in chiral space. In particular, chiral alkaline earth metal phosphate complexes have unique advantages as catalysts owing to the ubiquitous availability of alkaline earth metals, strong Brønste...
This thesis describes the synthesis of novel ligands that include enantiomerically pure acetal and o...
The research described in this thesis is directed toward the efficient, enantioselective synthesis o...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemistry, 2003.Includes bibliograp...
Small molecule hydrogen bond donors have emerged as versatile catalysts in asymmetric synthesis. Wit...
Asymmetric synthesis and catalysis is one of the leading research areas in chemistry society, for it...
Chiral phosphoric acid (CPA) catalysts have witnessed rapid development recently. They have demonstr...
The research presented in this dissertation focuses on chiral BINOL metal phosphatephosphoric acid c...
This thesis describes mechanistic studies, rational ligand design, and synthesis of asymmetric trans...
This thesis summarizes the author’s graduate research on phosphorus ligands synthesis and catalytic ...
Chiral molecules as with biological activity are plentiful in nature and the chemical literature; ho...
Transition metal catalyzed hydrogenations are among the most powerful and direct approaches for the ...
Asymmetric catalysis has been playing an important role in modern synthetic chemistry. In the past d...
This thesis deals with secondary interactions in asymmetric catalysis and their impact on the outcom...
Catalytic asymmetric hydrogenations of prochiral unsaturated compounds, such as olefins, ketones, an...
This thesis describes the synthesis and application of four novel chiral ligand classes...
This thesis describes the synthesis of novel ligands that include enantiomerically pure acetal and o...
The research described in this thesis is directed toward the efficient, enantioselective synthesis o...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemistry, 2003.Includes bibliograp...
Small molecule hydrogen bond donors have emerged as versatile catalysts in asymmetric synthesis. Wit...
Asymmetric synthesis and catalysis is one of the leading research areas in chemistry society, for it...
Chiral phosphoric acid (CPA) catalysts have witnessed rapid development recently. They have demonstr...
The research presented in this dissertation focuses on chiral BINOL metal phosphatephosphoric acid c...
This thesis describes mechanistic studies, rational ligand design, and synthesis of asymmetric trans...
This thesis summarizes the author’s graduate research on phosphorus ligands synthesis and catalytic ...
Chiral molecules as with biological activity are plentiful in nature and the chemical literature; ho...
Transition metal catalyzed hydrogenations are among the most powerful and direct approaches for the ...
Asymmetric catalysis has been playing an important role in modern synthetic chemistry. In the past d...
This thesis deals with secondary interactions in asymmetric catalysis and their impact on the outcom...
Catalytic asymmetric hydrogenations of prochiral unsaturated compounds, such as olefins, ketones, an...
This thesis describes the synthesis and application of four novel chiral ligand classes...
This thesis describes the synthesis of novel ligands that include enantiomerically pure acetal and o...
The research described in this thesis is directed toward the efficient, enantioselective synthesis o...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemistry, 2003.Includes bibliograp...