Theoretical and experimental information on the shape and morphology of bare and passivated gold clusters is fundamental to predict and understand their electronic, optical, and other physical and chemical properties. An effective theoretical approach to determine the lowest-energy configuration (global minimum) and the structures of low energy isomers (local minima) of clusters is to combine genetic algorithms and many-body potentials (to perform global structural optimizations), and first-principles density functional theory (to confirm the stability and energy ordering of the local minima). The main trend emerging from structural optimizations of bare Au clusters in the size range of $12{-}212$ atoms indicates that many topo...
Over recent years, research on thiolate-protected gold clusters Aum(SR)n has gained significant inte...
Based on density functional theory computations of the well-known chiral Au38(SR)24 nanocluster an...
Au<sub>30</sub>S(S-<i>t</i>-Bu)<sub>18</sub> cluster, related closely to the recently isolated “gre...
Chiral structures have been found as the lowest-energy isomers of bare (Au$_{28}$ and Au$_{55}) and ...
Chirality is a fundamental property of matter with profound impact in physics, chemistry, biology, a...
On the basis of density functional theory computations of the well-known chiral Au38(SR)24 nanoclust...
Unlike bulk materials, the physicochemical properties of nano-sized metal clusters can be strongly d...
We predict and analyze density-functional theory (DFT)-based structures for the recently isolated Au...
In this thesis, bare and thiolate-protected gold nanoclusters and thiolated polymeric gold, silver ...
A Comment on the Letter by H. Hakkinen, R. N. Barnett, and U. Landman, Phys. Rev. Lett. 82, 3264 (19...
A structure evolution map of face-centered cubic (fcc)-structured thiolate-ligand protected gold nan...
Gold nanoparticles have shown remarkable applications in many fields of medicine, biosensors, and ca...
The structural, electronic, and optical properties of the protected Au clusters with icosahedral (Ih...
It is essential to understand the intrinsic stability of the gold-thiolate clusters, which present e...
We report on how the transition from the bulk structure to the cluster-specific structure occurs in ...
Over recent years, research on thiolate-protected gold clusters Aum(SR)n has gained significant inte...
Based on density functional theory computations of the well-known chiral Au38(SR)24 nanocluster an...
Au<sub>30</sub>S(S-<i>t</i>-Bu)<sub>18</sub> cluster, related closely to the recently isolated “gre...
Chiral structures have been found as the lowest-energy isomers of bare (Au$_{28}$ and Au$_{55}) and ...
Chirality is a fundamental property of matter with profound impact in physics, chemistry, biology, a...
On the basis of density functional theory computations of the well-known chiral Au38(SR)24 nanoclust...
Unlike bulk materials, the physicochemical properties of nano-sized metal clusters can be strongly d...
We predict and analyze density-functional theory (DFT)-based structures for the recently isolated Au...
In this thesis, bare and thiolate-protected gold nanoclusters and thiolated polymeric gold, silver ...
A Comment on the Letter by H. Hakkinen, R. N. Barnett, and U. Landman, Phys. Rev. Lett. 82, 3264 (19...
A structure evolution map of face-centered cubic (fcc)-structured thiolate-ligand protected gold nan...
Gold nanoparticles have shown remarkable applications in many fields of medicine, biosensors, and ca...
The structural, electronic, and optical properties of the protected Au clusters with icosahedral (Ih...
It is essential to understand the intrinsic stability of the gold-thiolate clusters, which present e...
We report on how the transition from the bulk structure to the cluster-specific structure occurs in ...
Over recent years, research on thiolate-protected gold clusters Aum(SR)n has gained significant inte...
Based on density functional theory computations of the well-known chiral Au38(SR)24 nanocluster an...
Au<sub>30</sub>S(S-<i>t</i>-Bu)<sub>18</sub> cluster, related closely to the recently isolated “gre...