Cellulose immobilized palladium (0) nanoparticles (PdNPs) were prepared for the use in scalable catalytic reactions in flow. Preparation of the catalyst is remarkably simple and fast, where a palladium acetate solution is drop-casted onto cellulose paper and then exposed to 1 atm of hydrogen for a mere 90 s to produce embedded Pd(0) nanoparticles. This catalyst system is efficient in the hydrogenation of alkenes, nitroarenes, ketones, and enamides, with products formed in high yields, under ambient pressure and temperature. The system is also effective for transfer hydrogenation using ammonium formate as an alternative hydrogen source. A high catalyst stability and reusability are demonstrated along with the chemoselective and scalable synt...
International audienceA process intensification study for the full hydrogenation of bio-derived plat...
International audienceA new material, consisting of alginate-polyethyleneimine (AP) foam, with high ...
We present a novel strategy based on the immobilization of palladium nanoparticles (Pd NPs) on filte...
Cellulose immobilized palladium (0) nanoparticles (PdNPs) were prepared for the use in scalable cata...
Cellulose immobilized palladium (0) nanoparticles (PdNPs) were prepared for the use in scalable cata...
International audiencePolymeric flat-sheet membranes and hollow fibers were prepared via UV photo-in...
A chemoselective continuous-flow hydrogenation of aldehydes catalyzed by a dispersion of platinum na...
Pd nanoparticles were easily immobilized onto titanate nanotubes by a straightforward procedure. The...
The intersection of heterogeneous catalysis and flow chemistry is of great importance for the emergi...
Sequential adsorption of PdCl42- within weak polyelectrolyte layer-by-layer (LbL) self-assembled mul...
International audienceThe transition from batch catalytic processes to continuous flow processes req...
The continuous recovery and recycling of soluble metal nanoparticles by means of ultrafiltration is ...
A combination of "water soluble'' palladium nanoparticles stabilized by an ionic liquid-like copolym...
A heterogeneous Pd catalyst, biologically-mineralized palladium nanoparticles (bio-Pd), was synthesi...
We present the utilization of a heterogeneous catalyst comprised of Pd nanoparticles supported on am...
International audienceA process intensification study for the full hydrogenation of bio-derived plat...
International audienceA new material, consisting of alginate-polyethyleneimine (AP) foam, with high ...
We present a novel strategy based on the immobilization of palladium nanoparticles (Pd NPs) on filte...
Cellulose immobilized palladium (0) nanoparticles (PdNPs) were prepared for the use in scalable cata...
Cellulose immobilized palladium (0) nanoparticles (PdNPs) were prepared for the use in scalable cata...
International audiencePolymeric flat-sheet membranes and hollow fibers were prepared via UV photo-in...
A chemoselective continuous-flow hydrogenation of aldehydes catalyzed by a dispersion of platinum na...
Pd nanoparticles were easily immobilized onto titanate nanotubes by a straightforward procedure. The...
The intersection of heterogeneous catalysis and flow chemistry is of great importance for the emergi...
Sequential adsorption of PdCl42- within weak polyelectrolyte layer-by-layer (LbL) self-assembled mul...
International audienceThe transition from batch catalytic processes to continuous flow processes req...
The continuous recovery and recycling of soluble metal nanoparticles by means of ultrafiltration is ...
A combination of "water soluble'' palladium nanoparticles stabilized by an ionic liquid-like copolym...
A heterogeneous Pd catalyst, biologically-mineralized palladium nanoparticles (bio-Pd), was synthesi...
We present the utilization of a heterogeneous catalyst comprised of Pd nanoparticles supported on am...
International audienceA process intensification study for the full hydrogenation of bio-derived plat...
International audienceA new material, consisting of alginate-polyethyleneimine (AP) foam, with high ...
We present a novel strategy based on the immobilization of palladium nanoparticles (Pd NPs) on filte...