The direct use of allylic alcohols in substitution reactions without pre-activation of the hydroxyl-group into a better leaving group or the use of additional stoichiometric in situ activators remains challenging due to the poor leaving group ability of the hydroxyl-group. Hence, it is important to develop new methods to activate (bio-mass derived) allyl-alcohols, which allow ‘green’ chemical processes for a broad substrate range. This may have a considerable impact on the methodology for fine chemical transformations in the pharmaceutical and fragrance industries. With the work described in this thesis, we aim to develop a novel waste-free catalytic system for the direct substitution reactions of allylic alcohols in alkylation and aminatio...
This licentiate thesis is based on the development of catalytic reactions for the synthesis and appl...
Pd-Et3B catalytic system promotes the generation of allyl cations, allyl anions, and zwitterionic tr...
One of the strategic building blocks in organic synthesis is 3-hydroxypropionic acid, which is parti...
We report direct activation of allylic alcohols using a hydrogen-bond-assisted palladium catalyst an...
The direct dehydrative activation of allylic alcohols and subsequent cross-coupling with alkenes by ...
This thesis focuses on the development of methods for the activation of the hydroxyl group in non-de...
This thesis deals with the palladium-catalyzed nucleophilic substitution of π-activated alcohols in ...
We here report a computational approach on the mechanism of allylicamination reactions using allyl-a...
This thesis is based on the development of novel catalytic reactions for the synthesis and applicati...
In-situ activation of a variety of allylic alcohols by hexachlorophosphazene (or oxalyl chloride) fo...
ABSTRACT: The direct coupling of allyl alcohols with nitro-alkanes, nitriles, and aldehydes using ca...
International audienceModern organic synthesis now requires efficient atom economical synthetic meth...
The direct electrophilic, nucleophilic, and amphiphilic allylations of allylic alcohol by use of a p...
Allylic moiety, an important structural motif in organic chemistry, can be easily transformed into m...
The present thesis describes the development of new catalytic protocols to transform allylic substra...
This licentiate thesis is based on the development of catalytic reactions for the synthesis and appl...
Pd-Et3B catalytic system promotes the generation of allyl cations, allyl anions, and zwitterionic tr...
One of the strategic building blocks in organic synthesis is 3-hydroxypropionic acid, which is parti...
We report direct activation of allylic alcohols using a hydrogen-bond-assisted palladium catalyst an...
The direct dehydrative activation of allylic alcohols and subsequent cross-coupling with alkenes by ...
This thesis focuses on the development of methods for the activation of the hydroxyl group in non-de...
This thesis deals with the palladium-catalyzed nucleophilic substitution of π-activated alcohols in ...
We here report a computational approach on the mechanism of allylicamination reactions using allyl-a...
This thesis is based on the development of novel catalytic reactions for the synthesis and applicati...
In-situ activation of a variety of allylic alcohols by hexachlorophosphazene (or oxalyl chloride) fo...
ABSTRACT: The direct coupling of allyl alcohols with nitro-alkanes, nitriles, and aldehydes using ca...
International audienceModern organic synthesis now requires efficient atom economical synthetic meth...
The direct electrophilic, nucleophilic, and amphiphilic allylations of allylic alcohol by use of a p...
Allylic moiety, an important structural motif in organic chemistry, can be easily transformed into m...
The present thesis describes the development of new catalytic protocols to transform allylic substra...
This licentiate thesis is based on the development of catalytic reactions for the synthesis and appl...
Pd-Et3B catalytic system promotes the generation of allyl cations, allyl anions, and zwitterionic tr...
One of the strategic building blocks in organic synthesis is 3-hydroxypropionic acid, which is parti...