A particularly stable thiolate-protected gold nanocluster, Au-25(SR)(18), was structurally characterized from X-ray crystallography in 2008, and concomitantly its electronic and optical properties were analyzed via density functional theory. The robust geometry and a well-understood electronic structure of this cluster motivate explorations of properties of extended systems made out of Au-25(SR)(18) building blocks. As a first step in this direction, we analyze here structural, vibrational, electronic, and optical properties of the Au-25 cluster anion as it was observed in the crystalline environment and predict properties of cluster dimers, where the Au-25 units are linked together. via an aromatic dithiolate linker. We show that propertie...
Thiolate protected gold nanoclusters (NC) Aun(SR)m are a remarkable group of atomically precise stru...
Au<sub>25</sub>(SR)<sub>18</sub> has provided fundamental insights into the properties of clusters p...
The structure, properties, and applications of atomically precise gold nanoclusters are the object o...
A particularly stable thiolate-protected gold nanocluster, Au-25(SR)(18), was structurally character...
X-ray crystallography has been fundamental in discovering fine structural features of ultrasmall gol...
Unlike bulk materials, the physicochemical properties of nano-sized metal clusters can be strongly d...
X-ray crystallography has been fundamental in discovering fine structural features of ultrasmall gol...
In this thesis, bare and thiolate-protected gold nanoclusters and thiolated polymeric gold, silver ...
In the past few years, the interest in the study of atomically precise metal nanoclusters has grown ...
Atomically precise monolayer protected clusters are molecules comprising a few-atom cluster core of ...
Thiolate-protected gold nanoclusters (denoted as Aum(SR)n or AunLm) have received extensive attentio...
We report a new gold thiolate cluster with molecular purity. Electrospray ionization (ESI) mass spec...
Au25(SR)18 has provided fundamental insights into the properties of clusters protected by monolayers...
Synthesis, characterization, and functionalization of self-assembled, ligand-stabilized gold nanopar...
Thiolate-protected gold clusters are complex systems, in which both the surface-covalent A...
Thiolate protected gold nanoclusters (NC) Aun(SR)m are a remarkable group of atomically precise stru...
Au<sub>25</sub>(SR)<sub>18</sub> has provided fundamental insights into the properties of clusters p...
The structure, properties, and applications of atomically precise gold nanoclusters are the object o...
A particularly stable thiolate-protected gold nanocluster, Au-25(SR)(18), was structurally character...
X-ray crystallography has been fundamental in discovering fine structural features of ultrasmall gol...
Unlike bulk materials, the physicochemical properties of nano-sized metal clusters can be strongly d...
X-ray crystallography has been fundamental in discovering fine structural features of ultrasmall gol...
In this thesis, bare and thiolate-protected gold nanoclusters and thiolated polymeric gold, silver ...
In the past few years, the interest in the study of atomically precise metal nanoclusters has grown ...
Atomically precise monolayer protected clusters are molecules comprising a few-atom cluster core of ...
Thiolate-protected gold nanoclusters (denoted as Aum(SR)n or AunLm) have received extensive attentio...
We report a new gold thiolate cluster with molecular purity. Electrospray ionization (ESI) mass spec...
Au25(SR)18 has provided fundamental insights into the properties of clusters protected by monolayers...
Synthesis, characterization, and functionalization of self-assembled, ligand-stabilized gold nanopar...
Thiolate-protected gold clusters are complex systems, in which both the surface-covalent A...
Thiolate protected gold nanoclusters (NC) Aun(SR)m are a remarkable group of atomically precise stru...
Au<sub>25</sub>(SR)<sub>18</sub> has provided fundamental insights into the properties of clusters p...
The structure, properties, and applications of atomically precise gold nanoclusters are the object o...