Metal nanoparticles (NPs) are usually stabilized by a capping agent, a surfactant, or a support material, to maintain their integrity. However, these strategies can impact their intrinsic catalytic activity. Here, we demonstrate that the in-situ formation of copper NPs (Cu(0)NPs) upon the reduction of the earth-abundant Jacquesdietrichite mineral with ammonia borane (NH3BH3, AB) can provide an alternative solution for stability issues. During the formation of Cu(0)NPs, hydrogen gas is released from AB, and utilized for the reduction of nitroarenes to their corresponding anilines, at room temperature and under ambient pressure. After the nitroarene-to-aniline conversion is completed, regeneration of the mineral occurs upon the exposure of Cu...
Herein we report the development of a cost-effective nanocluster catalyst for the hydrolytic dehydro...
Polymer supported nickel nanoparticles, generated by calcination under nitrogen of a Ni(II) containi...
Over the last decade, transition metal nanoparticles have attracted much attention owing to their un...
A novel nanocatalyst, multi-wall carbon nanotube supported palladium/copper (PdCu@MWCNT) nanoparticl...
Herein, we report on the use of nanopalladium on amino-functionalized siliceous mesocellular foam as...
We report a general strategy for the synthesis of metal nanosponges (M = Ag, Au, Pt, Pd, and Cu) usi...
Because of the requirements of sustainable development as well as the desirability of using molecula...
Sustainable catalysts based on earth-abundant elements are considered as economical alternatives to ...
In the field of a heterogeneous industrial catalysis process, the encapsulated structure plays a cru...
Copper oxide (CuO) is used as a reusable solid reagent for hydrogenation of nitroarenes to aminoaren...
The solvent-free selective hydrogenation of nitrobenzene was carried out using a supported AuPd nano...
A new strategy to transform non-noble metal oxide nanoparticles (NPs) into highly active and selecti...
Ammonia borane is an appropriate solid hydrogen storage material because of its high hydrogen conten...
The catalytic activity of PVP-Pd nanoparticles synthesized by electrochemical methods was explored i...
Development of novel Cu-based catalysts has become one of the frontiers in the catalytic production ...
Herein we report the development of a cost-effective nanocluster catalyst for the hydrolytic dehydro...
Polymer supported nickel nanoparticles, generated by calcination under nitrogen of a Ni(II) containi...
Over the last decade, transition metal nanoparticles have attracted much attention owing to their un...
A novel nanocatalyst, multi-wall carbon nanotube supported palladium/copper (PdCu@MWCNT) nanoparticl...
Herein, we report on the use of nanopalladium on amino-functionalized siliceous mesocellular foam as...
We report a general strategy for the synthesis of metal nanosponges (M = Ag, Au, Pt, Pd, and Cu) usi...
Because of the requirements of sustainable development as well as the desirability of using molecula...
Sustainable catalysts based on earth-abundant elements are considered as economical alternatives to ...
In the field of a heterogeneous industrial catalysis process, the encapsulated structure plays a cru...
Copper oxide (CuO) is used as a reusable solid reagent for hydrogenation of nitroarenes to aminoaren...
The solvent-free selective hydrogenation of nitrobenzene was carried out using a supported AuPd nano...
A new strategy to transform non-noble metal oxide nanoparticles (NPs) into highly active and selecti...
Ammonia borane is an appropriate solid hydrogen storage material because of its high hydrogen conten...
The catalytic activity of PVP-Pd nanoparticles synthesized by electrochemical methods was explored i...
Development of novel Cu-based catalysts has become one of the frontiers in the catalytic production ...
Herein we report the development of a cost-effective nanocluster catalyst for the hydrolytic dehydro...
Polymer supported nickel nanoparticles, generated by calcination under nitrogen of a Ni(II) containi...
Over the last decade, transition metal nanoparticles have attracted much attention owing to their un...