Determining the extent of oxidation in batches of metal nanoparticles is essential to predict the behaviour of the material. Using aberration corrected transmission electron microscopy (TEM) it was possible to detect the formation of an oxide shell, of thickness 3 nm, on the surface of copper nanoparticles. Further analysis showed that this shell actually consists of two layers, both of which were polycrystalline in nature with domains in the size range of 1-2 nm, and having a thickness of 1.5 nm each. Energy dispersive x-ray spectroscopy confirms that the layers arise due to the formation of oxides, but it was not possible to determine their exact nature. Analysis of the intensity variation within images obtained via probe corrected scanni...
Morphological structure at the nanoscale dictates material properties due to size and shape dependen...
Cu nanoparticles are commonly used in microelectronic devices and as catalysts in, for example, meth...
Structural characterization of Cu-Nanoparticles Salzemann, Caroline 1,2; Lisiecki, Isabelle 2; Urban...
Determining the extent of oxidation in batches of metal nanoparticles is essential to predict the be...
Understanding the oxidation and reduction mechanisms of catalytically active transition metal nanopa...
International audienceDespite the broad relevance of copper nanoparticles in industrial applications...
A method for extracting core and shell spectra from core–shell particles with varying core to shell ...
Nanosized surface structures of Cu powders were investigated at the atomic scale by field-emission t...
Chemical reactions involving nanoparticles often follow complex processes. In this respect, real-tim...
Structural characterization of Cu-Nanoparticles Salzemann, Caroline 1,2; Lisiecki, Isabelle 2; Urba...
Transition metal oxides constitute one of the most fruitful sources of materials with continuously i...
Nanoparticles of nickel and iron are prepared by inert gas condensation of plasma evaporated vapour....
To bridge the gap between information provided by surface science methods (adsorption of up to ~a fe...
Many researchers have investigated the catalytic performance ofgold nanoparticles (GNPs) supported o...
Copper nanostructures are ubiquitous in microelectronics and heterogeneous catalysis and their oxida...
Morphological structure at the nanoscale dictates material properties due to size and shape dependen...
Cu nanoparticles are commonly used in microelectronic devices and as catalysts in, for example, meth...
Structural characterization of Cu-Nanoparticles Salzemann, Caroline 1,2; Lisiecki, Isabelle 2; Urban...
Determining the extent of oxidation in batches of metal nanoparticles is essential to predict the be...
Understanding the oxidation and reduction mechanisms of catalytically active transition metal nanopa...
International audienceDespite the broad relevance of copper nanoparticles in industrial applications...
A method for extracting core and shell spectra from core–shell particles with varying core to shell ...
Nanosized surface structures of Cu powders were investigated at the atomic scale by field-emission t...
Chemical reactions involving nanoparticles often follow complex processes. In this respect, real-tim...
Structural characterization of Cu-Nanoparticles Salzemann, Caroline 1,2; Lisiecki, Isabelle 2; Urba...
Transition metal oxides constitute one of the most fruitful sources of materials with continuously i...
Nanoparticles of nickel and iron are prepared by inert gas condensation of plasma evaporated vapour....
To bridge the gap between information provided by surface science methods (adsorption of up to ~a fe...
Many researchers have investigated the catalytic performance ofgold nanoparticles (GNPs) supported o...
Copper nanostructures are ubiquitous in microelectronics and heterogeneous catalysis and their oxida...
Morphological structure at the nanoscale dictates material properties due to size and shape dependen...
Cu nanoparticles are commonly used in microelectronic devices and as catalysts in, for example, meth...
Structural characterization of Cu-Nanoparticles Salzemann, Caroline 1,2; Lisiecki, Isabelle 2; Urban...