The elaboration of a polymeric catalytic membrane containing palladium nanoparticles is presented. The membrane was prepared using a photo-grafting process with imidazolium-based ionic liquid monomers as modifying agent and microPES® as support membrane. Ionic liquid serves as a stabilizer and immobilizer for the catalytic species, i.e. palladium nanoparticles. The Suzuki–Miyaura cross-coupling reaction was carried out on the catalytic membrane in flow-through configuration. Complete conversion was achieved in 10 s through one single filtration, without formation of byproducts. The apparent reaction rate constant was three orders of magnitude greater than in a batch reactor. No catalyst leaching was detected. This membrane offers the possib...
This paper reports innovative coupling for the development of catalytic membrane reactors. Photograf...
Ionic liquid (IL)-hybrid organosilicas based on 1-n-butyl-3-(3-trimethoxysilylpropyl)-imidazolium ca...
Abstract Metal nanoparticles are known as highly effective catalysts although their immobilization o...
International audienceThe elaboration of a polymeric catalytic membrane containing palladium nanopar...
Membrane processes represent a well matured technology for water treatment with low environmental fo...
The aim of this work is the synthesis of polymer-stabilized Pd nanoparticles inside a functionalized...
A polymeric catalytic membrane was previously prepared that showed remarkable efficiency for Suzuki-...
Palladium nanoparticles stabilized by heteroatom donor‐modified polystyrene‐based polymer immobilize...
Des membranes supports en polymère ont été photo-greffées par des poly(liquide ionique)s (polyLIs) à...
Palladium nanoparticles stabilized by heteroatom donor‐modified polystyrene‐based polymer immobilize...
Polymeric support membranes were modified via photo-grafting by poly(ionic liquid)s (polyILs), featu...
Anisotropic palladium–poly(ionic liquid) catalyst membranes have been prepared by complexation of pa...
International audiencePolymeric flat-sheet membranes and hollow fibers were prepared via UV photo-in...
The aim of this work is the synthesis of polymer-stabilized Pd nanoparticles (PdNP) inside a functio...
The preparation of monolithic polyionic supports which serve as efficient heterogeneous supports for...
This paper reports innovative coupling for the development of catalytic membrane reactors. Photograf...
Ionic liquid (IL)-hybrid organosilicas based on 1-n-butyl-3-(3-trimethoxysilylpropyl)-imidazolium ca...
Abstract Metal nanoparticles are known as highly effective catalysts although their immobilization o...
International audienceThe elaboration of a polymeric catalytic membrane containing palladium nanopar...
Membrane processes represent a well matured technology for water treatment with low environmental fo...
The aim of this work is the synthesis of polymer-stabilized Pd nanoparticles inside a functionalized...
A polymeric catalytic membrane was previously prepared that showed remarkable efficiency for Suzuki-...
Palladium nanoparticles stabilized by heteroatom donor‐modified polystyrene‐based polymer immobilize...
Des membranes supports en polymère ont été photo-greffées par des poly(liquide ionique)s (polyLIs) à...
Palladium nanoparticles stabilized by heteroatom donor‐modified polystyrene‐based polymer immobilize...
Polymeric support membranes were modified via photo-grafting by poly(ionic liquid)s (polyILs), featu...
Anisotropic palladium–poly(ionic liquid) catalyst membranes have been prepared by complexation of pa...
International audiencePolymeric flat-sheet membranes and hollow fibers were prepared via UV photo-in...
The aim of this work is the synthesis of polymer-stabilized Pd nanoparticles (PdNP) inside a functio...
The preparation of monolithic polyionic supports which serve as efficient heterogeneous supports for...
This paper reports innovative coupling for the development of catalytic membrane reactors. Photograf...
Ionic liquid (IL)-hybrid organosilicas based on 1-n-butyl-3-(3-trimethoxysilylpropyl)-imidazolium ca...
Abstract Metal nanoparticles are known as highly effective catalysts although their immobilization o...