In this paper, we report the colloidal synthesis and detailed characterization of 11 nm bimetallic CoCu nanoparticle catalysts. Presently Co and Cu is an attractive combination because of their respective properties for industrially important Fischer-Tropsch and methanol synthesis reactions of CO (and CO2) with H2. We report the preparation of catalysts by deposition of bimetallic metal nanoparticles, both within mesoporous silica (MCF-17) and on the native oxide surface of a silicon wafer. Subsequent phase separation into phase-segregated (i.e. dimer) particles is found to occur upon redox treatment. These nanoparticle catalysts have then been investigated using an array of techniques including synchrotron-based ambient pressure X-ray phot...
Abstract Bimetallic nanoparticle (NP) catalysts are widely used in many heterogeneous gas‐based reac...
International audienceReducibility of Cospecies in silica supported Fischer–Tropsch catalysts was st...
Understanding the structure-activity relationship over silica-supported Au-based bimetallic nanocata...
In this paper, we report the colloidal synthesis and detailed characterization of 11 nm bimetallic C...
Bimetallic nanoparticles (∼11 nm diameter) of CuNi and CuCo were prepared by a new synthetic route a...
The control of the phase distribution in multicomponent nanomaterials is critical to optimize their ...
The catalytic hydrogenations of CO and CO2 to more useful chemicals is not only beneficial in produc...
Surface segregation and restructuring in size-selected CuNi nanoparticles were investigated via near...
The performance of supported metal catalysts can depend on many factors, including metal particle si...
Two 20 wt.% Co/SiO2 catalysts were prepared using silica gel as a support and cobalt acetate and nit...
Surface segregation and restructuring in size-selected CuNi nanoparticles were investigated via near...
We find that nearly monodisperse copper oxide nanoparticles prepared via the thermal decomposition o...
The use of colloidal metallic nanoparticles (NPs) in catalysis is an interesting strategy to address...
Understanding the changes that a catalyst may experience on its surface during a reaction is crucial...
MnO nanoparticles (6 nm) were supported on mesoporous spinel Co3O4 and studied using ambient pressur...
Abstract Bimetallic nanoparticle (NP) catalysts are widely used in many heterogeneous gas‐based reac...
International audienceReducibility of Cospecies in silica supported Fischer–Tropsch catalysts was st...
Understanding the structure-activity relationship over silica-supported Au-based bimetallic nanocata...
In this paper, we report the colloidal synthesis and detailed characterization of 11 nm bimetallic C...
Bimetallic nanoparticles (∼11 nm diameter) of CuNi and CuCo were prepared by a new synthetic route a...
The control of the phase distribution in multicomponent nanomaterials is critical to optimize their ...
The catalytic hydrogenations of CO and CO2 to more useful chemicals is not only beneficial in produc...
Surface segregation and restructuring in size-selected CuNi nanoparticles were investigated via near...
The performance of supported metal catalysts can depend on many factors, including metal particle si...
Two 20 wt.% Co/SiO2 catalysts were prepared using silica gel as a support and cobalt acetate and nit...
Surface segregation and restructuring in size-selected CuNi nanoparticles were investigated via near...
We find that nearly monodisperse copper oxide nanoparticles prepared via the thermal decomposition o...
The use of colloidal metallic nanoparticles (NPs) in catalysis is an interesting strategy to address...
Understanding the changes that a catalyst may experience on its surface during a reaction is crucial...
MnO nanoparticles (6 nm) were supported on mesoporous spinel Co3O4 and studied using ambient pressur...
Abstract Bimetallic nanoparticle (NP) catalysts are widely used in many heterogeneous gas‐based reac...
International audienceReducibility of Cospecies in silica supported Fischer–Tropsch catalysts was st...
Understanding the structure-activity relationship over silica-supported Au-based bimetallic nanocata...