Ground-state structures and other experimentally relevant isomers of Au15 - to A u24 - clusters are determined through joint first-principles density functional theory and photoelectron spectroscopy measurements. Subsequent calculations of m olecular O2 adsorption to the optimal cluster structures reveal a size-dependent reactivity pattern that agrees well with earlier experiments. A detailed analys is of the underlying electronic structure shows that the chemical reactivity of the gold cluster anions can be elucidated in terms of a partial-jellium picture, where delocalized electrons occupying electronic shells move over the ionic ske leton, whose geometric structureis strongly influenced by the directional bondin g associated with the hig...
The reactivity of small metallic clusters, nanoparticles composed of a countable number of atoms (ty...
Gold’s structure-dependent catalytic activity motivates the study of reactions on a range of gold na...
In accordance with the well established gold–hydrogen analogy, a hydrogen atom mimics the properties...
<p>Structures, stability, and chemical reactivity of Au<sub><i>n</i></sub> (<i>n</i> = 2-10) cluster...
Relativistic density functional theory (DFT) based calculations have been performed on gold clusters...
The properties of small gold clusters are studied by use of density functional theory (DFT). A metho...
Small gold clusters Au m (m ≤ 16) were analyzed step by step using the density functional theory at ...
The catalytic, electrochemical, and optical properties of gold clusters and small nanoparticles depe...
The structural and electronic effects of isoelectronic substitution by Ag and Cu atoms on gold clust...
The Influence of ligands on electronic structure of small gold clusters. (Au(2), Au(4)) has been inv...
Determining geometric and electronic structures of gold nanoparticles are of fundamental interest in...
The influence of ligands on electronic structure of small gold clusters (Au2, Au4) has been investig...
The influence of relativistic effects on the structure, vibrational modes, and reactivity of recentl...
The interaction of O2 with charged and neutral gold clusters, AuN- and AuN containing up to eight at...
The influence of relativistic effects on the structure, vibrational modes, and reactivity of recentl...
The reactivity of small metallic clusters, nanoparticles composed of a countable number of atoms (ty...
Gold’s structure-dependent catalytic activity motivates the study of reactions on a range of gold na...
In accordance with the well established gold–hydrogen analogy, a hydrogen atom mimics the properties...
<p>Structures, stability, and chemical reactivity of Au<sub><i>n</i></sub> (<i>n</i> = 2-10) cluster...
Relativistic density functional theory (DFT) based calculations have been performed on gold clusters...
The properties of small gold clusters are studied by use of density functional theory (DFT). A metho...
Small gold clusters Au m (m ≤ 16) were analyzed step by step using the density functional theory at ...
The catalytic, electrochemical, and optical properties of gold clusters and small nanoparticles depe...
The structural and electronic effects of isoelectronic substitution by Ag and Cu atoms on gold clust...
The Influence of ligands on electronic structure of small gold clusters. (Au(2), Au(4)) has been inv...
Determining geometric and electronic structures of gold nanoparticles are of fundamental interest in...
The influence of ligands on electronic structure of small gold clusters (Au2, Au4) has been investig...
The influence of relativistic effects on the structure, vibrational modes, and reactivity of recentl...
The interaction of O2 with charged and neutral gold clusters, AuN- and AuN containing up to eight at...
The influence of relativistic effects on the structure, vibrational modes, and reactivity of recentl...
The reactivity of small metallic clusters, nanoparticles composed of a countable number of atoms (ty...
Gold’s structure-dependent catalytic activity motivates the study of reactions on a range of gold na...
In accordance with the well established gold–hydrogen analogy, a hydrogen atom mimics the properties...