Transition-metal clusters have long been proposed as model systems to study heterogeneous catalysts. In this Concept article we show how advanced spectroscopic techniques can be used to determine the structures of gas-phase transition-metal clusters and their complexes with small molecules. Combined with computational studies, this can help to develop an understanding of the reactivity of these catalytic models
Chemical reactions are used to probe the atomic (geometrical) structure of isolated clusters of tran...
Previous studies have shown that small clusters of transition metals like Pt, when reacted with oxyg...
The growth of platinum clusters by the addition of Pt(II) complexes to clusters with an average oxid...
The reactivity of small metallic clusters, nanoparticles composed of a countable number of atoms (ty...
Identification of active sites in heterogeneous metal catalysts is critical for understanding the re...
When searching for a more efficient way to dehydrogenate propane into propene, the use of sub-nanome...
Subnanometer sized transition metal clusters have attracted a great deal of interest in recent years...
The focus of our research program is the study of gas phase metal clusters to evaluate their potenti...
In what follows we use the term cluster to designate a cohesive group of like atoms (molecules), i.e...
The d-band model has been useful in understanding how adsorbate molecules form bonds and interact wi...
The use of physicochemical preparation techniques of metal clusters in the ultrahigh vacuum (UHV) al...
The reactions of small cationic platinum clusters (Pt2+–Pt7+) with molecular hydrogen were investiga...
Recent studies of catalysis by supported metal cluster compounds have shown that these systems exhib...
Platinum-based bimetallic nanoparticles are analyzed by the application of density functional theory...
When small clusters are studied in chemical physics or physical chemistry, one perhaps thinks of the...
Chemical reactions are used to probe the atomic (geometrical) structure of isolated clusters of tran...
Previous studies have shown that small clusters of transition metals like Pt, when reacted with oxyg...
The growth of platinum clusters by the addition of Pt(II) complexes to clusters with an average oxid...
The reactivity of small metallic clusters, nanoparticles composed of a countable number of atoms (ty...
Identification of active sites in heterogeneous metal catalysts is critical for understanding the re...
When searching for a more efficient way to dehydrogenate propane into propene, the use of sub-nanome...
Subnanometer sized transition metal clusters have attracted a great deal of interest in recent years...
The focus of our research program is the study of gas phase metal clusters to evaluate their potenti...
In what follows we use the term cluster to designate a cohesive group of like atoms (molecules), i.e...
The d-band model has been useful in understanding how adsorbate molecules form bonds and interact wi...
The use of physicochemical preparation techniques of metal clusters in the ultrahigh vacuum (UHV) al...
The reactions of small cationic platinum clusters (Pt2+–Pt7+) with molecular hydrogen were investiga...
Recent studies of catalysis by supported metal cluster compounds have shown that these systems exhib...
Platinum-based bimetallic nanoparticles are analyzed by the application of density functional theory...
When small clusters are studied in chemical physics or physical chemistry, one perhaps thinks of the...
Chemical reactions are used to probe the atomic (geometrical) structure of isolated clusters of tran...
Previous studies have shown that small clusters of transition metals like Pt, when reacted with oxyg...
The growth of platinum clusters by the addition of Pt(II) complexes to clusters with an average oxid...