An insight into the nano- and micro-structural morphology of a polymer supported Pd catalyst employed in different catalytic reactions under green conditions is reported. The pre-catalyst was obtained by copolymerization of the metal-containing monomer Pd(AAEMA)2 [AAEMA = deprotonated form of 2-(acetoacetoxy) ethyl methacrylate] with ethyl methacrylate as co-monomer, and ethylene glycol dimethacrylate as cross-linker. This material was used in water for the Suzuki-Miyaura cross-coupling of aryl bromides, and for the reduction of nitroarenes and quinolines using NaBH4 or H2, as reductants. TEM analyses showed that in all cases the pristine Pd(II) species were reduced in situ to Pd(0), which formed metal nanoparticles (NPs, the real active sp...
Examination of a series of C–H bond functionalization reactions of heteroarenes (e.g., indole, benzo...
Abstract(#br)Reusable palladium nanoparticles highly dispersed in porous and hydrophilic interpenetr...
Palladium nanoparticles have been immobilized into an amino-functionalized metal-organic framework (...
An insight into the nano- and micro-structural morphology of a polymer supported Pd catalyst employe...
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...
Silica supported palladium nanoparticles (PdNPs) were prepared by a convenient one-step method, with...
A polymer supported palladium catalyst, obtained by copolymerization of Pd(AAEMA)2 [AAEMA- = deproto...
Novel polymeric architectures and analytical methods were designed for the synthesis, characterizati...
It is highly desirable to design functionalized supports in heterogeneous catalysis regarding the st...
Nanoparticles immobilized on a solid support are able to catalyse a wide range of reactions, and the...
This study shows that polymer nanogels (well-defined cross-linked nanoparticles behaving as highly h...
Polymer supported palladium nanoparticles, generated in situ by Pd(II) reduction under reaction cond...
The development of new methods to prepare Pd-containing nanomaterials for catalysis are reported. Mo...
The preparation of monolithic polyionic supports which serve as efficient heterogeneous supports for...
Examination of a series of C–H bond functionalization reactions of heteroarenes (e.g., indole, benzo...
Abstract(#br)Reusable palladium nanoparticles highly dispersed in porous and hydrophilic interpenetr...
Palladium nanoparticles have been immobilized into an amino-functionalized metal-organic framework (...
An insight into the nano- and micro-structural morphology of a polymer supported Pd catalyst employe...
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...
Silica supported palladium nanoparticles (PdNPs) were prepared by a convenient one-step method, with...
A polymer supported palladium catalyst, obtained by copolymerization of Pd(AAEMA)2 [AAEMA- = deproto...
Novel polymeric architectures and analytical methods were designed for the synthesis, characterizati...
It is highly desirable to design functionalized supports in heterogeneous catalysis regarding the st...
Nanoparticles immobilized on a solid support are able to catalyse a wide range of reactions, and the...
This study shows that polymer nanogels (well-defined cross-linked nanoparticles behaving as highly h...
Polymer supported palladium nanoparticles, generated in situ by Pd(II) reduction under reaction cond...
The development of new methods to prepare Pd-containing nanomaterials for catalysis are reported. Mo...
The preparation of monolithic polyionic supports which serve as efficient heterogeneous supports for...
Examination of a series of C–H bond functionalization reactions of heteroarenes (e.g., indole, benzo...
Abstract(#br)Reusable palladium nanoparticles highly dispersed in porous and hydrophilic interpenetr...
Palladium nanoparticles have been immobilized into an amino-functionalized metal-organic framework (...