The present work investigates the reactivity of the surface species observable by in situ DRIFTS formed over a Pt/ZrO2 during the water\u2013gas shift (WGS) reaction. A DRIFTS cell/mass spectrometer system was operated at the chemical steady state during isotopic transients to yield information about the true nature (i.e., main reaction intermediate or spectators) of adsorbates. Only carbonyl and formate species were observed by DRIFTS under reaction conditions; the surface coverage of carbonate species was negligible. Isotopic transient kinetic analyses revealed that formates exchanged uniformly according to a first-order law, suggesting that most formates observed by DRIFTS were of the same reactivity. In addition, the time scale of the e...
The reaction mechanism of the reverse water–gas shift (RWGS) reaction was investigated using two com...
The industrially important water–gas-shift (WGS) reaction is a complex network of competing elementa...
The mechanism of water-gas shift reaction, CO+ H 20 = CO2+ H 2, catalyzed by evapo-rated platinum fi...
The present report investigates the role of formate species as potential reaction intermediates for ...
A series of <i>y</i> wt % Pt/Ce<sub><i>x</i></sub>Zr<sub>1–<i>x</i></sub>O<sub>2</sub> catalysts (<i...
The reactivity of the species formed at the surface of a Au/Ce(La)O2 catalyst during the water–gas s...
Summarization: A detailed kinetic and mechanistic study of the water–gas shift (WGS) reaction on a 0...
The reactivity of mono- and multi-coordinated hydroxyl groups on Pt/ZrO2 with CO was investigated wi...
The water gas shift (WGS) reaction was studied on Pt/CeO2, Pt/ZrO2 and Pt/CexZrx-1O2 catalysts. All ...
Steady-state isotopic transient kinetic analysis (SSITKA) experiments coupled with mass spectrometry...
Steady-state isotopic transient kinetic analysis (SSITKA) experiments coupled with mass spectrometry...
An operando method for the analysis of heterogeneous catalytic reaction was developed using the reac...
The reaction mechanism of the reverse water–gas shift (RWGS) reaction was investigated using two com...
Oxide support plays a significant role in the mechanistic reaction sequence for the water–gas shift ...
Using ambient pressure XPS (APXPS), we explored carbon dioxide (CO2) adsorption and CO2 hydrogenatio...
The reaction mechanism of the reverse water–gas shift (RWGS) reaction was investigated using two com...
The industrially important water–gas-shift (WGS) reaction is a complex network of competing elementa...
The mechanism of water-gas shift reaction, CO+ H 20 = CO2+ H 2, catalyzed by evapo-rated platinum fi...
The present report investigates the role of formate species as potential reaction intermediates for ...
A series of <i>y</i> wt % Pt/Ce<sub><i>x</i></sub>Zr<sub>1–<i>x</i></sub>O<sub>2</sub> catalysts (<i...
The reactivity of the species formed at the surface of a Au/Ce(La)O2 catalyst during the water–gas s...
Summarization: A detailed kinetic and mechanistic study of the water–gas shift (WGS) reaction on a 0...
The reactivity of mono- and multi-coordinated hydroxyl groups on Pt/ZrO2 with CO was investigated wi...
The water gas shift (WGS) reaction was studied on Pt/CeO2, Pt/ZrO2 and Pt/CexZrx-1O2 catalysts. All ...
Steady-state isotopic transient kinetic analysis (SSITKA) experiments coupled with mass spectrometry...
Steady-state isotopic transient kinetic analysis (SSITKA) experiments coupled with mass spectrometry...
An operando method for the analysis of heterogeneous catalytic reaction was developed using the reac...
The reaction mechanism of the reverse water–gas shift (RWGS) reaction was investigated using two com...
Oxide support plays a significant role in the mechanistic reaction sequence for the water–gas shift ...
Using ambient pressure XPS (APXPS), we explored carbon dioxide (CO2) adsorption and CO2 hydrogenatio...
The reaction mechanism of the reverse water–gas shift (RWGS) reaction was investigated using two com...
The industrially important water–gas-shift (WGS) reaction is a complex network of competing elementa...
The mechanism of water-gas shift reaction, CO+ H 20 = CO2+ H 2, catalyzed by evapo-rated platinum fi...