Silica-supported, bimetallic Cu-Ni nanomaterials were prepared with different ratios of Cu to Ni by incipient wetness impregnation without a specific calcination step before reduction. Different in situ characterization techniques, in particular transmission electron microscopy (TEM), X-ray diffraction (XRD), and X-ray absorption spectroscopy (XAS), were applied to follow the reduction and alloying process of Cu-Ni nanoparticles on silica. In situ reduction of Cu-Ni samples with structural characterization by combined synchrotron XRD and XAS reveals a strong interaction between Cu and Ni species, which results in improved reducibility of the Ni species compared with monometallic Ni. At high Ni concentrations silica-supported Cu-Ni alloys fo...
Cu-Ni (1:3, 1:1, 3:1) bimetallic nanoparticles have been synthesized by a microemulsion route using ...
Au-Cu alloy nanoparticles were synthesized by a chemical reduction method. Five samples having diffe...
Ternary mixture of Cu, Mg, and Ni with the nominal composition of nanocrystalline Cu50Mg25Ni25 (in a...
The influence of the amount of complexing agent added to the starting solution on the physicochemica...
Copper, nickel and copper-nickel nanoparticles were prepared by solution combustion method for use i...
Bimetallic nanoparticles (∼11 nm diameter) of CuNi and CuCo were prepared by a new synthetic route a...
Ni-Cu alloys are employed on a large scale in the marine industry due to their excellent corrosion r...
Sequential ion implantation (copper and nickel) in silica and soda-lime glasses has been performed. ...
Cu-Ni composite nanoparticles were successfully prepared by chemical reduction with hydrazine hydrat...
Cu-Ni nano-alloys were prepared using precursors synthesized by the citrate-gel method. The effects ...
The interaction of Ni(CO)4/CO gas mixtures with Cu(111) and Cu(110) single crystal surfaces has been...
Bimetallic Ni-Cu particles were synthesized from either suspensions of nickel carbonate and copper c...
International audienceHerein, a way to generate mono- and bi-metallic copper and/or nickel nanoparti...
Cu–Ni (1:3, 1:1, 3:1) bimetallic nanoparticles have been synthesized by a microemulsion route using ...
In the present study, various (Ag–Cu) nanoalloy particles are embedded in the Ni matrix and synthesi...
Cu-Ni (1:3, 1:1, 3:1) bimetallic nanoparticles have been synthesized by a microemulsion route using ...
Au-Cu alloy nanoparticles were synthesized by a chemical reduction method. Five samples having diffe...
Ternary mixture of Cu, Mg, and Ni with the nominal composition of nanocrystalline Cu50Mg25Ni25 (in a...
The influence of the amount of complexing agent added to the starting solution on the physicochemica...
Copper, nickel and copper-nickel nanoparticles were prepared by solution combustion method for use i...
Bimetallic nanoparticles (∼11 nm diameter) of CuNi and CuCo were prepared by a new synthetic route a...
Ni-Cu alloys are employed on a large scale in the marine industry due to their excellent corrosion r...
Sequential ion implantation (copper and nickel) in silica and soda-lime glasses has been performed. ...
Cu-Ni composite nanoparticles were successfully prepared by chemical reduction with hydrazine hydrat...
Cu-Ni nano-alloys were prepared using precursors synthesized by the citrate-gel method. The effects ...
The interaction of Ni(CO)4/CO gas mixtures with Cu(111) and Cu(110) single crystal surfaces has been...
Bimetallic Ni-Cu particles were synthesized from either suspensions of nickel carbonate and copper c...
International audienceHerein, a way to generate mono- and bi-metallic copper and/or nickel nanoparti...
Cu–Ni (1:3, 1:1, 3:1) bimetallic nanoparticles have been synthesized by a microemulsion route using ...
In the present study, various (Ag–Cu) nanoalloy particles are embedded in the Ni matrix and synthesi...
Cu-Ni (1:3, 1:1, 3:1) bimetallic nanoparticles have been synthesized by a microemulsion route using ...
Au-Cu alloy nanoparticles were synthesized by a chemical reduction method. Five samples having diffe...
Ternary mixture of Cu, Mg, and Ni with the nominal composition of nanocrystalline Cu50Mg25Ni25 (in a...