The preparation of monolithic polyionic supports which serve as efficient heterogeneous supports for palladium(0) nanoparticles is described. These functionalized polymers were incorporated inside a flow reactor and employed in Suzuki-Miyaura and Heck cross couplings under continuous flow conditions.Fonds der Chemischen IndustrieDFG/397/6-
Producción CientíficaA new generation of confined palladium(II) catalysts covalently attached inside...
Nanoparticles immobilized on a solid support are able to catalyse a wide range of reactions, and the...
Miniaturisation of reactions to the sub-millilitre scale, through the use of microreactor technolog...
Ultrafine Pd nanoparticles (dm = 2.3 nm), obtained by metal vapor synthesis technique, were immobili...
The development and advantages of in situ synthesis of organic polymer monolith supports for metal p...
An insight into the nano- and micro-structural morphology of a polymer supported Pd catalyst employe...
Palladium nanoparticles (Pd NPs) synthesized by the metal vapor synthesis technique were supported o...
The elaboration of a polymeric catalytic membrane containing palladium nanoparticles is presented. T...
It is highly desirable to design functionalized supports in heterogeneous catalysis regarding the st...
Metal vapor synthesis (MVS) technique provides a valuable synthetic route to obtain supported Pd nan...
An insight into the nano- and micro-structural morphology of a polymer supported Pd catalyst employe...
Abstract(#br)Reusable palladium nanoparticles highly dispersed in porous and hydrophilic interpenetr...
A new generation of confined palladium(II) catalysts covalently attached inside of porous organic po...
The introduction of imidazolium subunits into polystyrene-divinylbenzene (PS-DVB) polymers enables t...
We describe a solid polyphenylene support that serves as an excellent platform for metal‐catalyzed r...
Producción CientíficaA new generation of confined palladium(II) catalysts covalently attached inside...
Nanoparticles immobilized on a solid support are able to catalyse a wide range of reactions, and the...
Miniaturisation of reactions to the sub-millilitre scale, through the use of microreactor technolog...
Ultrafine Pd nanoparticles (dm = 2.3 nm), obtained by metal vapor synthesis technique, were immobili...
The development and advantages of in situ synthesis of organic polymer monolith supports for metal p...
An insight into the nano- and micro-structural morphology of a polymer supported Pd catalyst employe...
Palladium nanoparticles (Pd NPs) synthesized by the metal vapor synthesis technique were supported o...
The elaboration of a polymeric catalytic membrane containing palladium nanoparticles is presented. T...
It is highly desirable to design functionalized supports in heterogeneous catalysis regarding the st...
Metal vapor synthesis (MVS) technique provides a valuable synthetic route to obtain supported Pd nan...
An insight into the nano- and micro-structural morphology of a polymer supported Pd catalyst employe...
Abstract(#br)Reusable palladium nanoparticles highly dispersed in porous and hydrophilic interpenetr...
A new generation of confined palladium(II) catalysts covalently attached inside of porous organic po...
The introduction of imidazolium subunits into polystyrene-divinylbenzene (PS-DVB) polymers enables t...
We describe a solid polyphenylene support that serves as an excellent platform for metal‐catalyzed r...
Producción CientíficaA new generation of confined palladium(II) catalysts covalently attached inside...
Nanoparticles immobilized on a solid support are able to catalyse a wide range of reactions, and the...
Miniaturisation of reactions to the sub-millilitre scale, through the use of microreactor technolog...