Palladacycles are highly efficient precatalysts in cross-coupling reactions whose immobilization on carbonaceous materials has been hardly studied. Herein, we report a detailed study on the synthesis and characterization of new oxime palladacycle-graphene oxide non-covalent materials along with their catalytic activity in the Suzuki–Miyaura reaction. Catalyst 1-GO, which has been fully characterized by ICP, XPS, TGA, and UV-Vis analyses has been demonstrated to be an efficient catalyst for the Suzuki–Miyaura coupling between aryl bromides and arylboronic acids using very low catalyst loadings (0.002 mol % of Pd) at room temperature under aqueous conditions
International audienceAn efficient catalytic system based on a new palladium–bis(oxazoline) () compl...
We present a biogenic method for the synthesis of palladium nanoparticle (PdNP)-modified by reducing...
Phenone oxime-derived palladacycles are stable, easy to prepare, and an excellent source of three- a...
Palladacycles are highly efficient precatalysts in cross-coupling reactions whose immobilization on ...
Graphene oxide (GO) was functionalized with a N-heterocyclic carbene (NHC) precursor, 3-(3-aminoprop...
A novel magnetic nanoparticle-supported oxime palladacycle catalyst was successfully prepared and ch...
Using polymeric nanocomposites incorporated Pd to promote C-C coupling reactions has been found as o...
A novel catalytic system based on palladium nanoparticles (Pd-NPs) immobilized onto the surface of g...
An efficient reduced graphene oxide-supported heterogenized palladium complex with pyrene-tagged ket...
A green and efficient approach for the ligand free Suzuki–Miyaura and Mizoroki–Heck C–C cross coupli...
A novel nanocatalyst was designed and prepared. Initially, the surface of magnetic graphene oxide (M...
Palladium nanoparticles (NPs) are decorated on the surface of an amine-functionalized graphene oxide...
The synthesis of life saving drug molecules in a cost-effective and environmentally benign pathway i...
Nitrogen-doped graphene (NDG)-palladium (Pd)-based nanocatalysts (NDG@Pd) can be potentially applied...
We present a biogenic method for the synthesis of palladium nanoparticle (PdNP)-modified by reducing...
International audienceAn efficient catalytic system based on a new palladium–bis(oxazoline) () compl...
We present a biogenic method for the synthesis of palladium nanoparticle (PdNP)-modified by reducing...
Phenone oxime-derived palladacycles are stable, easy to prepare, and an excellent source of three- a...
Palladacycles are highly efficient precatalysts in cross-coupling reactions whose immobilization on ...
Graphene oxide (GO) was functionalized with a N-heterocyclic carbene (NHC) precursor, 3-(3-aminoprop...
A novel magnetic nanoparticle-supported oxime palladacycle catalyst was successfully prepared and ch...
Using polymeric nanocomposites incorporated Pd to promote C-C coupling reactions has been found as o...
A novel catalytic system based on palladium nanoparticles (Pd-NPs) immobilized onto the surface of g...
An efficient reduced graphene oxide-supported heterogenized palladium complex with pyrene-tagged ket...
A green and efficient approach for the ligand free Suzuki–Miyaura and Mizoroki–Heck C–C cross coupli...
A novel nanocatalyst was designed and prepared. Initially, the surface of magnetic graphene oxide (M...
Palladium nanoparticles (NPs) are decorated on the surface of an amine-functionalized graphene oxide...
The synthesis of life saving drug molecules in a cost-effective and environmentally benign pathway i...
Nitrogen-doped graphene (NDG)-palladium (Pd)-based nanocatalysts (NDG@Pd) can be potentially applied...
We present a biogenic method for the synthesis of palladium nanoparticle (PdNP)-modified by reducing...
International audienceAn efficient catalytic system based on a new palladium–bis(oxazoline) () compl...
We present a biogenic method for the synthesis of palladium nanoparticle (PdNP)-modified by reducing...
Phenone oxime-derived palladacycles are stable, easy to prepare, and an excellent source of three- a...