Chemical reactions involving nanoparticles often follow complex processes. In this respect, real-time probing of single nanoparticles under reactive conditions is crucial for uncovering the mechanisms driving the reaction pathway. Here, we have captured in situ the oxidation of single Cu nanoparticles to unravel a sequential competitive activation of different mechanisms at temperatures 50-200 degrees C. Using environmental scanning transmission electron microscopy, we monitor the evolution of oxide formation with sub-nanometre spatial resolution, and show how the prevalence of oxide island nucleation, Cabrera-Mott, Valensi-Carter and Kirkendall mechanisms under different conditions determines the morphology of the particles. Moreover, usin...
To bridge the gap between information provided by surface science methods (adsorption of up to ~a fe...
Plasmon excitation in metal nanoparticles triggers the generation of highly energetic charge carrier...
The oxidation state of Cu nanoparticles during CO oxidation in CO + O2 gas mixtures was sensitively ...
Copper nanostructures are ubiquitous in microelectronics and heterogeneous catalysis and their oxida...
Understanding the oxidation and reduction mechanisms of catalytically active transition metal nanopa...
The oxidation of transition metal surfaces is a process that takes place readily at ambient conditio...
Abstract Catalysis is an important and key part of many processes both in fundamental research and i...
Cu nanoparticles are commonly used in microelectronic devices and as catalysts in, for example, meth...
International audienceColloidal solutions of copper nanoparticles (7.2 +/- 1.1 nm 1.6 diameter), sta...
The ability to study oxidation, reduction, and other chemical transformations of nanoparticles in re...
Cu2–xSe nanoparticles are part of a promising class of alternative plasmonic materials where the loc...
International audienceDespite the broad relevance of copper nanoparticles in industrial applications...
The ability to study oxidation, reduction, and other chemical transformations of nanoparticles in re...
The oxidation of transition metal surfaces is a process that takes place readily at ambient conditio...
Grain boundaries determine physical properties of bulk materials including ductility, diffusivity, a...
To bridge the gap between information provided by surface science methods (adsorption of up to ~a fe...
Plasmon excitation in metal nanoparticles triggers the generation of highly energetic charge carrier...
The oxidation state of Cu nanoparticles during CO oxidation in CO + O2 gas mixtures was sensitively ...
Copper nanostructures are ubiquitous in microelectronics and heterogeneous catalysis and their oxida...
Understanding the oxidation and reduction mechanisms of catalytically active transition metal nanopa...
The oxidation of transition metal surfaces is a process that takes place readily at ambient conditio...
Abstract Catalysis is an important and key part of many processes both in fundamental research and i...
Cu nanoparticles are commonly used in microelectronic devices and as catalysts in, for example, meth...
International audienceColloidal solutions of copper nanoparticles (7.2 +/- 1.1 nm 1.6 diameter), sta...
The ability to study oxidation, reduction, and other chemical transformations of nanoparticles in re...
Cu2–xSe nanoparticles are part of a promising class of alternative plasmonic materials where the loc...
International audienceDespite the broad relevance of copper nanoparticles in industrial applications...
The ability to study oxidation, reduction, and other chemical transformations of nanoparticles in re...
The oxidation of transition metal surfaces is a process that takes place readily at ambient conditio...
Grain boundaries determine physical properties of bulk materials including ductility, diffusivity, a...
To bridge the gap between information provided by surface science methods (adsorption of up to ~a fe...
Plasmon excitation in metal nanoparticles triggers the generation of highly energetic charge carrier...
The oxidation state of Cu nanoparticles during CO oxidation in CO + O2 gas mixtures was sensitively ...