Ag-Cu alloy catalysts for ethylene epoxidation have been shown to yield higher selectivity towards ethylene oxide compared to pure Ag, the unique catalyst employed in the industrial process. Previous studies showed that under oxidizing conditions Cu forms oxide layers on top of Ag. Using first-principles atomistic simulations based on density functional theory, we investigate the reaction mechanism on the thin oxide layer structures and establish the reasons for the improved selectivity. We extend the range of applicability of the selectivity descriptor proposed by Kokalj et al. [J. Catal. 254, 304 (2008)], based on binding energies of reactants, intermediates, and products, by refitting its parameters so as to include thin oxide layer cata...
\u3cp\u3eDensity functional theory (DFT) calculations were employed to study epoxidation of ethylene...
Density functional theory (DFT) calculations were employed to study epoxidation of ethylene on a [Ag...
Catalytic selectivity in the epoxidation of ethylene to form ethylene oxide on alumina-supported sil...
Silver–copper alloys have been proposed as catalysts for ethylene epoxidation due to their superior ...
Combining first-principles calculations and in situ photoelectron spectroscopy, we show how the comp...
Ethylene epoxidation reaction to selectively produce the ethylene oxide (EO) is a crucial heterogene...
By means of first-principles density functional theory combined with atomistic thermodynamics, we ha...
Alloy catalysts under reaction conditions are complex entities. In oxidizing atmospheres, multiple p...
The activities of Cu2O(0 0 1), Ag2O(0 0 1), and Au2O(0 0 1) surfaces for direct ethylene epoxidation...
\u3cp\u3e In the epoxidation of ethylene, c...
In this paper, we investigate by means of first-principles density functional theory calculations th...
It is well-known that Cs+Re is an efficient dual-promoter in the Ag catalyzed ethylene epoxidation, ...
Ethylene oxide is one of the most important raw materials in the chemical industry, with an annual p...
The oxidation of copper catalysts during ethylene epoxidation was characterized using in-situ photoe...
Recent experiments on model catalysts have shown that Ag-Cu alloys have improved selectivity with re...
\u3cp\u3eDensity functional theory (DFT) calculations were employed to study epoxidation of ethylene...
Density functional theory (DFT) calculations were employed to study epoxidation of ethylene on a [Ag...
Catalytic selectivity in the epoxidation of ethylene to form ethylene oxide on alumina-supported sil...
Silver–copper alloys have been proposed as catalysts for ethylene epoxidation due to their superior ...
Combining first-principles calculations and in situ photoelectron spectroscopy, we show how the comp...
Ethylene epoxidation reaction to selectively produce the ethylene oxide (EO) is a crucial heterogene...
By means of first-principles density functional theory combined with atomistic thermodynamics, we ha...
Alloy catalysts under reaction conditions are complex entities. In oxidizing atmospheres, multiple p...
The activities of Cu2O(0 0 1), Ag2O(0 0 1), and Au2O(0 0 1) surfaces for direct ethylene epoxidation...
\u3cp\u3e In the epoxidation of ethylene, c...
In this paper, we investigate by means of first-principles density functional theory calculations th...
It is well-known that Cs+Re is an efficient dual-promoter in the Ag catalyzed ethylene epoxidation, ...
Ethylene oxide is one of the most important raw materials in the chemical industry, with an annual p...
The oxidation of copper catalysts during ethylene epoxidation was characterized using in-situ photoe...
Recent experiments on model catalysts have shown that Ag-Cu alloys have improved selectivity with re...
\u3cp\u3eDensity functional theory (DFT) calculations were employed to study epoxidation of ethylene...
Density functional theory (DFT) calculations were employed to study epoxidation of ethylene on a [Ag...
Catalytic selectivity in the epoxidation of ethylene to form ethylene oxide on alumina-supported sil...