The reconstruction of rhodium and platinum crystals of some tens of nanometres diameter was investigated during the ongoing hydrogenation of oxygen atoms resulting from the dissociation of O2 and NO2 species. Field ion and field emission electron microscopies (FIM and FEM) were used to characterise the apex of tip samples before, during and after the catalytic reactions. On rhodium samples, the exposure of less than 10 Langmuir of O2 is sufficient to induce significant morphological changes. At higher exposures, the presence of subsurface oxygen causes surface reconstructions illustrated with atomic resolution by FIM at 50 K. The same pattern is also visible at 505 K in the presence of H2 and O 2 during water production. Upon the decrease o...
The catalytic oxidation of hydrogen on Rh tips has been investigated using field ion microscopy (FIM...
This study aims at investigating the catalytic hydrogenation of nitrogen dioxide (NO2) on Pt, Rh and...
In this work, we investigate the catalytic hydrogenation of NO over palladium and platinum and of NO...
We present dynamic studies of surface reactions using video-Field Ion Microscopy (FIM) along with Pu...
The oxygen adsorption and its catalytic reaction with hydrogen on Pt–Rh single crystals were studied...
An accurate characterization of the rhodium specimen was obtained via FIM experiments. Reaction beha...
This work addresses as well the adsorption of CO2 as and the interaction of H2/CO2 gas mixtures over...
The valorisation of CO2 gas into useful products for the industry seems to beis one key way to addre...
The reaction of hydrogen/oxygen gas mixtures with rhodium single crystals was studied using video-FI...
In this work, we investigate the adsorption of carbon dioxide on rhodium (Rh) nanocrystals as well a...
The reaction of hydrogen/oxygen gas mixtures with rhodium single crystals was studied using video-FI...
This contribution reviews some of the recent progress made in local probing of catalytic surface rea...
CO2 is well-known greenhouse effect gas with a huge impact on the environment One possibility to dea...
Thermal faceting of clean and oxygen-covered Pt nanocrystals was investigated at the nanoscale by me...
Nitric oxides (NOx) emissions from vehicles are a matter of concern for the public health. NOx abate...
The catalytic oxidation of hydrogen on Rh tips has been investigated using field ion microscopy (FIM...
This study aims at investigating the catalytic hydrogenation of nitrogen dioxide (NO2) on Pt, Rh and...
In this work, we investigate the catalytic hydrogenation of NO over palladium and platinum and of NO...
We present dynamic studies of surface reactions using video-Field Ion Microscopy (FIM) along with Pu...
The oxygen adsorption and its catalytic reaction with hydrogen on Pt–Rh single crystals were studied...
An accurate characterization of the rhodium specimen was obtained via FIM experiments. Reaction beha...
This work addresses as well the adsorption of CO2 as and the interaction of H2/CO2 gas mixtures over...
The valorisation of CO2 gas into useful products for the industry seems to beis one key way to addre...
The reaction of hydrogen/oxygen gas mixtures with rhodium single crystals was studied using video-FI...
In this work, we investigate the adsorption of carbon dioxide on rhodium (Rh) nanocrystals as well a...
The reaction of hydrogen/oxygen gas mixtures with rhodium single crystals was studied using video-FI...
This contribution reviews some of the recent progress made in local probing of catalytic surface rea...
CO2 is well-known greenhouse effect gas with a huge impact on the environment One possibility to dea...
Thermal faceting of clean and oxygen-covered Pt nanocrystals was investigated at the nanoscale by me...
Nitric oxides (NOx) emissions from vehicles are a matter of concern for the public health. NOx abate...
The catalytic oxidation of hydrogen on Rh tips has been investigated using field ion microscopy (FIM...
This study aims at investigating the catalytic hydrogenation of nitrogen dioxide (NO2) on Pt, Rh and...
In this work, we investigate the catalytic hydrogenation of NO over palladium and platinum and of NO...