International audienceWet impregnation of pre-synthesized surfactant-stabilized aqueous rhodium (0) colloidal suspension on silica was employed in order to prepare supported Rh0 nanoparticles of well-defined composition, morphology and size. A magnetic core-shell support of silica (Fe3O4@SiO2) was used to increase the handling properties of the obtained nanoheterogeneous catalyst. The nanocomposite catalyst Fe3O4@SiO2-Rh0 NPs was highly active in the solventless hydrogenation of model olefins and aromatic substrates under mild conditions with turnover frequencies up to 143,000 h−1. The catalyst was characterized by various transmission electron microscopy techniques showing well-dispersed rhodium nanoparticles (∼3 nm) mainly located at the ...
International audienceWell dispersed and efficient Rh(0) hydrogenation catalysts were obtained by th...
Rhodium nanoparticles, derived from mesitylene-solvated rhodium atoms, deposited on g-Al2O3, are exc...
Nanoparticles (NPs) are an exciting new class of materials with unique physical and chemical propert...
Wet impregnation of pre-synthesized surfactant-stabilized aqueous rhodium (0) colloidal suspension o...
We here report the first magnetically recoverable Rh(0) nanoparticle-supported catalyst with extraor...
International audienceSilica-supported rhodium-based nanoheterogeneous catalysts were easily prepare...
International audienceColloidal metallic precursors have been used successfully to prepare new rhodi...
International audienceThe solution synthesis of rhodium nanoparticles (Rh NPs) was achieved from the...
International audienceRhodium composite nanomaterials were synthesized by an innovating process call...
Impregnation of as-synthesized MCM-41 silica by ethanolic solutions of rhodium(III) chloride was tes...
International audienceEven if rhodium is one of the rarest and the most costly metals, this noble me...
The hydrogenation of aromatics under mild conditions remains a challenge in the fields of synthetic ...
International audienceTiO2-supported Rh(0) nanoparticles were easily prepared in one step without ca...
A Rh<sup>0</sup>@γ-Fe<sub>2</sub>O<sub>3</sub> nanocomposite was easily prepared by straightforward ...
A silica-supported rhodium catalyst for the selective hydrogenation of phenol to cyclohexanone under...
International audienceWell dispersed and efficient Rh(0) hydrogenation catalysts were obtained by th...
Rhodium nanoparticles, derived from mesitylene-solvated rhodium atoms, deposited on g-Al2O3, are exc...
Nanoparticles (NPs) are an exciting new class of materials with unique physical and chemical propert...
Wet impregnation of pre-synthesized surfactant-stabilized aqueous rhodium (0) colloidal suspension o...
We here report the first magnetically recoverable Rh(0) nanoparticle-supported catalyst with extraor...
International audienceSilica-supported rhodium-based nanoheterogeneous catalysts were easily prepare...
International audienceColloidal metallic precursors have been used successfully to prepare new rhodi...
International audienceThe solution synthesis of rhodium nanoparticles (Rh NPs) was achieved from the...
International audienceRhodium composite nanomaterials were synthesized by an innovating process call...
Impregnation of as-synthesized MCM-41 silica by ethanolic solutions of rhodium(III) chloride was tes...
International audienceEven if rhodium is one of the rarest and the most costly metals, this noble me...
The hydrogenation of aromatics under mild conditions remains a challenge in the fields of synthetic ...
International audienceTiO2-supported Rh(0) nanoparticles were easily prepared in one step without ca...
A Rh<sup>0</sup>@γ-Fe<sub>2</sub>O<sub>3</sub> nanocomposite was easily prepared by straightforward ...
A silica-supported rhodium catalyst for the selective hydrogenation of phenol to cyclohexanone under...
International audienceWell dispersed and efficient Rh(0) hydrogenation catalysts were obtained by th...
Rhodium nanoparticles, derived from mesitylene-solvated rhodium atoms, deposited on g-Al2O3, are exc...
Nanoparticles (NPs) are an exciting new class of materials with unique physical and chemical propert...