Metal alloy catalysts can develop complex surface structures when exposed to reactive atmospheres. The structures of the resulting surfaces have intricate relationships with a myriad of factors, such as the affinity of the individual alloying elements to the components of the gas atmosphere, and the bond strengths of the multitude of low-energy surface compounds that can be formed. Identifying the atomic structure of such surfaces is a prerequisite for establishing structure-property relationships, as well as for modeling such catalysts in ab initio calculations. Here we show that an alloy, consisting of an oxophilic metal (Cu) diluted into a noble metal (Ag), forms a meta-stable 2-dimensional oxide monolayer the more oxophilic metal, when ...
<p>Using an <em>ab initio</em> atomistic thermodynamics framework, we identify the stable surface st...
Montemore, Matthew/0000-0002-4157-1745WOS: 000529225800041Gold and gold-silver alloys can be active ...
In this work we have tackled one of the most challenging problems in nanocatalysis namely understand...
Combining first-principles calculations and in situ photoelectron spectroscopy, we show how the comp...
Alloy catalysts under reaction conditions are complex entities. In oxidizing atmospheres, multiple p...
Recent experiments on model catalysts have shown that Ag-Cu alloys have improved selectivity with re...
In this paper, we investigate by means of first-principles density functional theory calculations th...
Alloy catalysts under reaction conditions are complex entities. In oxidizing atmospheres, multiple p...
Silver–copper alloys have been proposed as catalysts for ethylene epoxidation due to their superior ...
Ag-Cu alloy catalysts for ethylene epoxidation have been shown to yield higher selectivity towards e...
By means of first-principles density functional theory combined with atomistic thermodynamics, we ha...
Single-atom alloys (SAAs) have recently gained considerable attention in the field of heterogeneous ...
Transition metals are technologically important catalytic materials. The transition metal catalysts ...
A long-standing challenge in the study of heterogeneously catalyzed reactions on silver surfaces has...
The initial stages of oxide nucleation and surface oxide formation are hot topics at the moment due ...
<p>Using an <em>ab initio</em> atomistic thermodynamics framework, we identify the stable surface st...
Montemore, Matthew/0000-0002-4157-1745WOS: 000529225800041Gold and gold-silver alloys can be active ...
In this work we have tackled one of the most challenging problems in nanocatalysis namely understand...
Combining first-principles calculations and in situ photoelectron spectroscopy, we show how the comp...
Alloy catalysts under reaction conditions are complex entities. In oxidizing atmospheres, multiple p...
Recent experiments on model catalysts have shown that Ag-Cu alloys have improved selectivity with re...
In this paper, we investigate by means of first-principles density functional theory calculations th...
Alloy catalysts under reaction conditions are complex entities. In oxidizing atmospheres, multiple p...
Silver–copper alloys have been proposed as catalysts for ethylene epoxidation due to their superior ...
Ag-Cu alloy catalysts for ethylene epoxidation have been shown to yield higher selectivity towards e...
By means of first-principles density functional theory combined with atomistic thermodynamics, we ha...
Single-atom alloys (SAAs) have recently gained considerable attention in the field of heterogeneous ...
Transition metals are technologically important catalytic materials. The transition metal catalysts ...
A long-standing challenge in the study of heterogeneously catalyzed reactions on silver surfaces has...
The initial stages of oxide nucleation and surface oxide formation are hot topics at the moment due ...
<p>Using an <em>ab initio</em> atomistic thermodynamics framework, we identify the stable surface st...
Montemore, Matthew/0000-0002-4157-1745WOS: 000529225800041Gold and gold-silver alloys can be active ...
In this work we have tackled one of the most challenging problems in nanocatalysis namely understand...