Palladium nanoparticles supported on LAPONITE®, a synthetic clay, are shown to constitute a highly robust and stable catalytic system for Heck–Mizoroki reactions carried out under solventless conditions. Both the preparation and the use of the catalyst are straightforward, allowing easy separation of the reaction products in pure form. In the case of the reaction between butyl acrylate and iodobenzene, up to 50 catalyst cycles can be performed before observing a noticeable decrease in activity. After reactivation of the catalyst by calcination, it can be further used for at least an additional 25 reactions. The stability of the catalyst seems to be related to the electronic density of the reacting alkene, as illustrated by the results obtai...
Glycerol-derived ethers and their eutectic mixtures with two renewable ammonium salts (ChCl and N00C...
Palladium nanoparticles, obtained by the metal vapor synthesis (MVS) technique, were deposited on po...
The synthesis of a recyclable palladium-ionic liquid catalyst encapsulated in Halloysite nano-scroll...
Palladium nanoparticles supported on LAPONITE®, a synthetic clay, are shown to constitute a highly r...
A new family of solid catalysts has been prepared by supporting palladium nanoparticles on a synthet...
International audienceCore-shell nanogels are attractive stabilizers and supports for catalytically ...
Solid supported palladium nano/microparticles were found to be active catalysts to perform mono- and...
Pd nanoparticles were synthesized on nonfunctionalized and functionalized SBA-15 grafted with thiol ...
AbstractThe Heck coupling of iodobenzene with ethyl acrylate or styrene was used to assess the catal...
Metal vapor synthesis (MVS) technique provides a valuable synthetic route to obtain supported Pd nan...
Palladium nanocolloids supported on chitosan behave as very efficient heterogeneous catalysts in the...
Herein we wish to report our recent results in the Mizoroki–Heck alkenylations under batch and conti...
A new protocol is reported for the synthesis of a heterogeneous palladium nanocomposite stabilized w...
Metal leaching, contamination of final product, lack of recovery, and limited reusability are import...
Glycerol-derived ethers and their eutectic mixtures with two renewable ammonium salts (ChCl and N00C...
Palladium nanoparticles, obtained by the metal vapor synthesis (MVS) technique, were deposited on po...
The synthesis of a recyclable palladium-ionic liquid catalyst encapsulated in Halloysite nano-scroll...
Palladium nanoparticles supported on LAPONITE®, a synthetic clay, are shown to constitute a highly r...
A new family of solid catalysts has been prepared by supporting palladium nanoparticles on a synthet...
International audienceCore-shell nanogels are attractive stabilizers and supports for catalytically ...
Solid supported palladium nano/microparticles were found to be active catalysts to perform mono- and...
Pd nanoparticles were synthesized on nonfunctionalized and functionalized SBA-15 grafted with thiol ...
AbstractThe Heck coupling of iodobenzene with ethyl acrylate or styrene was used to assess the catal...
Metal vapor synthesis (MVS) technique provides a valuable synthetic route to obtain supported Pd nan...
Palladium nanocolloids supported on chitosan behave as very efficient heterogeneous catalysts in the...
Herein we wish to report our recent results in the Mizoroki–Heck alkenylations under batch and conti...
A new protocol is reported for the synthesis of a heterogeneous palladium nanocomposite stabilized w...
Metal leaching, contamination of final product, lack of recovery, and limited reusability are import...
Glycerol-derived ethers and their eutectic mixtures with two renewable ammonium salts (ChCl and N00C...
Palladium nanoparticles, obtained by the metal vapor synthesis (MVS) technique, were deposited on po...
The synthesis of a recyclable palladium-ionic liquid catalyst encapsulated in Halloysite nano-scroll...