The direct dehydrative activation of allylic alcohols and subsequent cross-coupling with alkenes by using palladium catalyst containing a phosphoramidite ligand is described. The activation of the allyl alcohol does not require stoichiometric additives, thus allowing clean, wastefree reactions. The scope is demonstrated by application of the protocol to a series allylic alcohols and vinyl arenes, leading to variety of 1,4-diene products. Based on kinetic studies, a mechanism is proposed that involves a palladium hydride species that activates the allyl alcohol to form the allyl intermediate
A reciprocal-activation strategy for allylic sulfination with unactivated allylic alcohols was devel...
The direct hydration of isoprene using a cation exchange resin catalyst afforded a,a- and y,y— dimet...
We here report a computational approach on the mechanism of allylicamination reactions using allyl-a...
The direct use of allylic alcohols in substitution reactions without pre-activation of the hydroxyl-...
A mild and efficient dehydrative cross-coupling reaction between allylic alcohols and N-heterocycles...
We report direct activation of allylic alcohols using a hydrogen-bond-assisted palladium catalyst an...
A mild and efficient dehydrative cross-coupling reaction between allylic alcohols and <i>N</i>-heter...
A direct dehydrative coupling of terminal alkynes with allylic alcohols catalyzed by Pd(PPh<sub>3</...
Transition-metal-catalyzed cross-coupling reactions between sp<sup>2</sup>-hybridized C atoms are of...
Pd-Et3B catalytic system promotes the generation of allyl cations, allyl anions, and zwitterionic tr...
Transition metal catalyzed C-C bond formation via C-H bond activation is currently one of the most i...
The combination of Pd catalyst and triethylborane induces allylic alcohols to undergo direct electro...
International audienceModern organic synthesis now requires efficient atom economical synthetic meth...
This thesis is based on the development of novel catalytic reactions for the synthesis and applicati...
Nonactivated phenols have been employed as nucleophiles in the allylation of nonderivatized allylic ...
A reciprocal-activation strategy for allylic sulfination with unactivated allylic alcohols was devel...
The direct hydration of isoprene using a cation exchange resin catalyst afforded a,a- and y,y— dimet...
We here report a computational approach on the mechanism of allylicamination reactions using allyl-a...
The direct use of allylic alcohols in substitution reactions without pre-activation of the hydroxyl-...
A mild and efficient dehydrative cross-coupling reaction between allylic alcohols and N-heterocycles...
We report direct activation of allylic alcohols using a hydrogen-bond-assisted palladium catalyst an...
A mild and efficient dehydrative cross-coupling reaction between allylic alcohols and <i>N</i>-heter...
A direct dehydrative coupling of terminal alkynes with allylic alcohols catalyzed by Pd(PPh<sub>3</...
Transition-metal-catalyzed cross-coupling reactions between sp<sup>2</sup>-hybridized C atoms are of...
Pd-Et3B catalytic system promotes the generation of allyl cations, allyl anions, and zwitterionic tr...
Transition metal catalyzed C-C bond formation via C-H bond activation is currently one of the most i...
The combination of Pd catalyst and triethylborane induces allylic alcohols to undergo direct electro...
International audienceModern organic synthesis now requires efficient atom economical synthetic meth...
This thesis is based on the development of novel catalytic reactions for the synthesis and applicati...
Nonactivated phenols have been employed as nucleophiles in the allylation of nonderivatized allylic ...
A reciprocal-activation strategy for allylic sulfination with unactivated allylic alcohols was devel...
The direct hydration of isoprene using a cation exchange resin catalyst afforded a,a- and y,y— dimet...
We here report a computational approach on the mechanism of allylicamination reactions using allyl-a...