This works deals with the identification of preferential site-specific activation at a model Pt surface during a multiproduct reaction. The (110)-type steps of a Pt(332) surface were selectively marked by attaching isotope-labeled 13CO molecules to them, and ethanol oxidation was probed by in situ Foureir transfrom infrared spectroscopy in order to precisely determine the specific sites at which CO2, acetic acid, and acetaldehyde were preferentially formed. The (110) steps were active for splitting the C–C bond, but unexpectedly, we provide evidence that the pathway of CO2 formation was preferentially activated at (111) terraces, rather than at (110) steps. Acetaldehyde was formed at (111) terraces at potentials comparable to those for CO2 ...
The co-adsorption of CO and OH on two Pt stepped surfaces vicinal to the (111) orientation has been ...
Experiments probe the effect of hydrogen co‐adsorption on the infrared spectral features of carbon m...
The electro-oxidation of small organic molecules is one of the major areas of interest in electrocat...
This works deals with the identification of preferential site-specific activation at a model Pt surf...
In the field of catalysis on solid surfaces, discrimination of the site-specific chemistry taking pl...
The oxidation of ethanol (EtOH) at Pt(111) electrodes is dominated by the 4e path leading to acetic ...
We have successfully built a general framework to comprehend the structure-selectivity relationship ...
This dissertation explored pathways in the electrochemical oxidation of small organic molecules at a...
Ethylene glycol (EG) oxidation has been studied on Pt(111) and its vicinal surfaces in acidic media ...
Using a combination of experimental and computational methods, mainly FTIR and DFT calculations, new...
"This document is the Accepted Manuscript version of a Published Work that appeared in final form in...
The oxidation of ethanol (EtOH) at Pt(111) electrodes is dominated by the 4e path leading to acetic ...
Ethanol fuel cells require selective catalysts for complete oxidation of the fuel, which involves C–...
In heterogeneous (electro)catalysis, the overall catalytic output results from responses of surface ...
Ethanol oxidation on different shape-controlled platinum nanoparticles at different pHs was studied ...
The co-adsorption of CO and OH on two Pt stepped surfaces vicinal to the (111) orientation has been ...
Experiments probe the effect of hydrogen co‐adsorption on the infrared spectral features of carbon m...
The electro-oxidation of small organic molecules is one of the major areas of interest in electrocat...
This works deals with the identification of preferential site-specific activation at a model Pt surf...
In the field of catalysis on solid surfaces, discrimination of the site-specific chemistry taking pl...
The oxidation of ethanol (EtOH) at Pt(111) electrodes is dominated by the 4e path leading to acetic ...
We have successfully built a general framework to comprehend the structure-selectivity relationship ...
This dissertation explored pathways in the electrochemical oxidation of small organic molecules at a...
Ethylene glycol (EG) oxidation has been studied on Pt(111) and its vicinal surfaces in acidic media ...
Using a combination of experimental and computational methods, mainly FTIR and DFT calculations, new...
"This document is the Accepted Manuscript version of a Published Work that appeared in final form in...
The oxidation of ethanol (EtOH) at Pt(111) electrodes is dominated by the 4e path leading to acetic ...
Ethanol fuel cells require selective catalysts for complete oxidation of the fuel, which involves C–...
In heterogeneous (electro)catalysis, the overall catalytic output results from responses of surface ...
Ethanol oxidation on different shape-controlled platinum nanoparticles at different pHs was studied ...
The co-adsorption of CO and OH on two Pt stepped surfaces vicinal to the (111) orientation has been ...
Experiments probe the effect of hydrogen co‐adsorption on the infrared spectral features of carbon m...
The electro-oxidation of small organic molecules is one of the major areas of interest in electrocat...