A novel nanocatalyst, multi-wall carbon nanotube supported palladium/copper (PdCu@MWCNT) nanoparticles, was synthesized for the reduction of nitroarene compounds. Characterization of the nanocatalyst was achieved by XRD, XPS, TEM, and Raman spectroscopy analysis. In this study, the hydrogenation of nitroarenes to primary amine compounds was achieved in aqueous medium at room temperature. The aniline derivatives were synthesized with high yields at mild conditions via novel PdCu@MWCNT nanocatalyst. The conversion of nitroarenes to amine derivatives was accomplished at 99% efficiency. In addition to its high activity, the PdCu@MWCNT catalyst was determined to be stable and reusable after the 3rd consecutive use for the reaction and provided 9...
International audienceMelamine based polymer (MT) was prepared and then reacted with a mixture of gl...
Ultrasmall-sized platinum nanoparticles (Pt NPs) (∼1 nm) supported on carbon nanotubes (CNTs) with n...
In this article, the in situ preparation of palladium nanoparticles, as mediated by the self-regulat...
The catalytic activity of PVP-Pd nanoparticles synthesized by electrochemical methods was explored i...
Nitrogen-functionalized active carbon-supported ultrasmall Pd nanoparticles were conveniently prepar...
In the present study, a novel heterogeneous catalyst was successfully fabricated through the decorat...
In the present study, a novel heterogeneous catalyst was successfully fabricated through the decorat...
Polymer supported palladium nanoparticles, generated in situ by Pd(II) reduction under reaction cond...
Metal nanoparticles (NPs) are usually stabilized by a capping agent, a surfactant, or a support mate...
International audienceRuthenium nanoparticles were assembled on carbon nanotubes and the resulting n...
International audienceThe reduction of nitroarenes is the most efficient route for the preparation o...
The reduction of nitroarenes to arylamines is a synthetically important transformation both in the l...
Herein, we report on the use of nanopalladium on amino-functionalized siliceous mesocellular foam as...
Pd nanoparticles have been synthesized over carbon nanotubes (CNT) and graphite oxide (GO) by reduct...
Coordenação de Aperfeiçoamento de Pessoal de Nível Superior - CAPESThe present work describes the sy...
International audienceMelamine based polymer (MT) was prepared and then reacted with a mixture of gl...
Ultrasmall-sized platinum nanoparticles (Pt NPs) (∼1 nm) supported on carbon nanotubes (CNTs) with n...
In this article, the in situ preparation of palladium nanoparticles, as mediated by the self-regulat...
The catalytic activity of PVP-Pd nanoparticles synthesized by electrochemical methods was explored i...
Nitrogen-functionalized active carbon-supported ultrasmall Pd nanoparticles were conveniently prepar...
In the present study, a novel heterogeneous catalyst was successfully fabricated through the decorat...
In the present study, a novel heterogeneous catalyst was successfully fabricated through the decorat...
Polymer supported palladium nanoparticles, generated in situ by Pd(II) reduction under reaction cond...
Metal nanoparticles (NPs) are usually stabilized by a capping agent, a surfactant, or a support mate...
International audienceRuthenium nanoparticles were assembled on carbon nanotubes and the resulting n...
International audienceThe reduction of nitroarenes is the most efficient route for the preparation o...
The reduction of nitroarenes to arylamines is a synthetically important transformation both in the l...
Herein, we report on the use of nanopalladium on amino-functionalized siliceous mesocellular foam as...
Pd nanoparticles have been synthesized over carbon nanotubes (CNT) and graphite oxide (GO) by reduct...
Coordenação de Aperfeiçoamento de Pessoal de Nível Superior - CAPESThe present work describes the sy...
International audienceMelamine based polymer (MT) was prepared and then reacted with a mixture of gl...
Ultrasmall-sized platinum nanoparticles (Pt NPs) (∼1 nm) supported on carbon nanotubes (CNTs) with n...
In this article, the in situ preparation of palladium nanoparticles, as mediated by the self-regulat...