The thermal stability of nanometer-sized Cu particles on a 400–500 nm thick SiO2 layer on top of a Si(100) substrate was studied after annealing in ultrahigh vacuum up to 620¿°C. Atomic force microscopy, low-energy ion scattering, Rutherford backscattering spectrometry, and Auger electron spectroscopy measurements clearly show that Cu-silicide islands are formed. A direct reaction of Cu with the SiO2 support is assumed, which is facilitated by a fairly strong metal-support interaction and by the wetting behavior of the silicide islands. Exposure to air at room temperature results in regeneration of the annealed Cu/SiO2 system
Cu nanocrystals (NCs) were produced by multiple high-energy ion implantations into 5-μm -thick amorp...
In heterogeneous catalysis, a nanoparticle (NP) system has immediate chemical surroundings with whic...
Initial stages of Cu immersion deposition in the presence of hydrofluoric acid on bulk and porous si...
The thermal stability of nanometer-sized Cu particles on a 400–500 nm thick SiO2 layer on top of a S...
The thermal stability of wet-chemically prepared Cu/SiO2 model catalysts containing nanometer-sized ...
The thermal stability of wet-chemically prepared Cu/SiO2 model catalysts containing nanometer-sized ...
Metal nanoparticles with a precisely controlled particle size distribution are ideal model catalysts...
Samples were prepared by high-energy implantation of Cu ions into a SiO_2 (5μm)/Si (substrate) matri...
Atmospheric pressure chemical vapor synthesis was used to produce copper nanoparticle composites in ...
In heterogeneous catalysis, a nanoparticle (NP) system has immediate chemical surroundings with whic...
We have investigated the effect of thermal annealing in reducing and oxidizing atmospheres on two sy...
Bimetallic nanoparticles (∼11 nm diameter) of CuNi and CuCo were prepared by a new synthetic route a...
Cu/SiO2 model catalysts containing nanometer-sized Cu particles on a flat silica model support were ...
Cu/SiO2 model catalysts containing nanometer-sized Cu particles on a flat silica model support were ...
We have investigated the effect of thermal annealing in reducing and oxidizing atmospheres on two sy...
Cu nanocrystals (NCs) were produced by multiple high-energy ion implantations into 5-μm -thick amorp...
In heterogeneous catalysis, a nanoparticle (NP) system has immediate chemical surroundings with whic...
Initial stages of Cu immersion deposition in the presence of hydrofluoric acid on bulk and porous si...
The thermal stability of nanometer-sized Cu particles on a 400–500 nm thick SiO2 layer on top of a S...
The thermal stability of wet-chemically prepared Cu/SiO2 model catalysts containing nanometer-sized ...
The thermal stability of wet-chemically prepared Cu/SiO2 model catalysts containing nanometer-sized ...
Metal nanoparticles with a precisely controlled particle size distribution are ideal model catalysts...
Samples were prepared by high-energy implantation of Cu ions into a SiO_2 (5μm)/Si (substrate) matri...
Atmospheric pressure chemical vapor synthesis was used to produce copper nanoparticle composites in ...
In heterogeneous catalysis, a nanoparticle (NP) system has immediate chemical surroundings with whic...
We have investigated the effect of thermal annealing in reducing and oxidizing atmospheres on two sy...
Bimetallic nanoparticles (∼11 nm diameter) of CuNi and CuCo were prepared by a new synthetic route a...
Cu/SiO2 model catalysts containing nanometer-sized Cu particles on a flat silica model support were ...
Cu/SiO2 model catalysts containing nanometer-sized Cu particles on a flat silica model support were ...
We have investigated the effect of thermal annealing in reducing and oxidizing atmospheres on two sy...
Cu nanocrystals (NCs) were produced by multiple high-energy ion implantations into 5-μm -thick amorp...
In heterogeneous catalysis, a nanoparticle (NP) system has immediate chemical surroundings with whic...
Initial stages of Cu immersion deposition in the presence of hydrofluoric acid on bulk and porous si...