This thesis deals with the palladium-catalyzed nucleophilic substitution of π-activated alcohols in which the C–O bond of a non-manipulated hydroxyl group is cleaved. The thesis is divided in two chapters describing two different catalytic systems. Chapter 2 describes a heterogeneous palladium-catalyzed transfer hydrogenolysis of primary, secondary, and tertiary benzylic alcohols to generate the corresponding aromatic hydrocarbons using formic acid as the hydrogen donor. A detailed mechanistic investigation of this reaction has been conducted that establish the kinetic order of each reaction component and also the deuterium kinetic isotope effects. This data provide a mechanistic picture that the hydride transfer from formic acid to palladi...
The catalytic system Pd/C-HCl is highly active in the reduction of mandelic acid derivatives to phen...
The present thesis describes the development of new catalytic protocols to transform allylic substra...
Theoretical studies on the chemical bonding in palladium complexes and mechanistic aspect on palladi...
The direct use of allylic alcohols in substitution reactions without pre-activation of the hydroxyl-...
This thesis focuses on the development of methods for the activation of the hydroxyl group in non-de...
We here report a computational approach on the mechanism of allylicamination reactions using allyl-a...
Benzyl alcohols are carbonylated to phenylacetic acid derivatives in the presence of a palladium cat...
2015-08-20The research efforts discussed herein encompass two broad subjects, the development of cat...
Since C–C bonds form the backbone of every organic molecule and reside at the heart of chemical scie...
The results of kinetic isotope determination and computational studies on Noyori-type catalytic syst...
A Pd-HCl catalytic system is highly active and selective in the hydrogen transfer from H2O-CO to the...
The use of an inert C–H bond towards the generation of a functional group is advantageous, as these ...
We report direct activation of allylic alcohols using a hydrogen-bond-assisted palladium catalyst an...
Chapter 1 is a review on homogeneous transfer hydrogenations. It shows the different reaction mechan...
Our interest in the development of transition-metal catalysis for the realisation of vicinal diamina...
The catalytic system Pd/C-HCl is highly active in the reduction of mandelic acid derivatives to phen...
The present thesis describes the development of new catalytic protocols to transform allylic substra...
Theoretical studies on the chemical bonding in palladium complexes and mechanistic aspect on palladi...
The direct use of allylic alcohols in substitution reactions without pre-activation of the hydroxyl-...
This thesis focuses on the development of methods for the activation of the hydroxyl group in non-de...
We here report a computational approach on the mechanism of allylicamination reactions using allyl-a...
Benzyl alcohols are carbonylated to phenylacetic acid derivatives in the presence of a palladium cat...
2015-08-20The research efforts discussed herein encompass two broad subjects, the development of cat...
Since C–C bonds form the backbone of every organic molecule and reside at the heart of chemical scie...
The results of kinetic isotope determination and computational studies on Noyori-type catalytic syst...
A Pd-HCl catalytic system is highly active and selective in the hydrogen transfer from H2O-CO to the...
The use of an inert C–H bond towards the generation of a functional group is advantageous, as these ...
We report direct activation of allylic alcohols using a hydrogen-bond-assisted palladium catalyst an...
Chapter 1 is a review on homogeneous transfer hydrogenations. It shows the different reaction mechan...
Our interest in the development of transition-metal catalysis for the realisation of vicinal diamina...
The catalytic system Pd/C-HCl is highly active in the reduction of mandelic acid derivatives to phen...
The present thesis describes the development of new catalytic protocols to transform allylic substra...
Theoretical studies on the chemical bonding in palladium complexes and mechanistic aspect on palladi...