The nobleness of gold surfaces has been appreciated since long before the beginning of recorded history. Yet, the origin of this phenomenon remains open because the so far existing explanations either incorrectly imply that silver should be the noblest metal or would fail to predict the dissolution of Au in aqua regia. Here, based on our analyses of oxygen adsorption, we advance that bulk gold\u27s unique resistance to oxidation is traced to the large energy cost associated with the perturbation its surfaces undergo upon adsorption of highly electronegative species. This fact is related to the almost totally filled d-band of Au and relativistic effects, but does not imply that the strength of the adsorbate-Au bond is weak. The magnitude of ...
Bulk gold is the most inert metal of all, however, when gold is finely dispersed on a support, it ca...
For understanding the catalytic activity of Fe<sub>3</sub>O<sub>4</sub>-supported gold catalysts, th...
Nanoporous gold (np-Au) is a catalytically highly active material, prepared by selectively dealloyin...
We tested the reactivity of an Au surface against H2 and compared the reactivity with Ag, Cu, and Pt...
It has been shown recently that while bulk gold is chemically inert, small Au clusters are catalytic...
The ability of metals to store or trap considerable amounts of energy, and thus exist in a non-equil...
In this chapter, experimental and theoretical studies on surface segregation in Ag-Au systems, inclu...
textGold used to be regarded as catalytically inert until about 20 years ago when it was shown that ...
The low-index surfaces of Au and Pt all tend to reconstruct, a fact that is of key importance in man...
Montemore, Matthew/0000-0002-4157-1745WOS: 000529225800041Gold and gold-silver alloys can be active ...
textGold has been considered catalytically inert due to its resistance to oxidation and corrosion. H...
Oxygen adsorption was studied on a Au/Pd(100) single crystal as a model for single-atom-alloy cataly...
Nanoporous gold (np-Au) has recently emerged as a highly selective environmentally friendly catalyst...
Nanoporous Au and other dilute AgAu alloys are highly active and selective oxidation catalysts. Thei...
Gold is considered as noble among other metals because of its resistance to oxidation and corrosion...
Bulk gold is the most inert metal of all, however, when gold is finely dispersed on a support, it ca...
For understanding the catalytic activity of Fe<sub>3</sub>O<sub>4</sub>-supported gold catalysts, th...
Nanoporous gold (np-Au) is a catalytically highly active material, prepared by selectively dealloyin...
We tested the reactivity of an Au surface against H2 and compared the reactivity with Ag, Cu, and Pt...
It has been shown recently that while bulk gold is chemically inert, small Au clusters are catalytic...
The ability of metals to store or trap considerable amounts of energy, and thus exist in a non-equil...
In this chapter, experimental and theoretical studies on surface segregation in Ag-Au systems, inclu...
textGold used to be regarded as catalytically inert until about 20 years ago when it was shown that ...
The low-index surfaces of Au and Pt all tend to reconstruct, a fact that is of key importance in man...
Montemore, Matthew/0000-0002-4157-1745WOS: 000529225800041Gold and gold-silver alloys can be active ...
textGold has been considered catalytically inert due to its resistance to oxidation and corrosion. H...
Oxygen adsorption was studied on a Au/Pd(100) single crystal as a model for single-atom-alloy cataly...
Nanoporous gold (np-Au) has recently emerged as a highly selective environmentally friendly catalyst...
Nanoporous Au and other dilute AgAu alloys are highly active and selective oxidation catalysts. Thei...
Gold is considered as noble among other metals because of its resistance to oxidation and corrosion...
Bulk gold is the most inert metal of all, however, when gold is finely dispersed on a support, it ca...
For understanding the catalytic activity of Fe<sub>3</sub>O<sub>4</sub>-supported gold catalysts, th...
Nanoporous gold (np-Au) is a catalytically highly active material, prepared by selectively dealloyin...