Small gold clusters with diameters less than or equal to 2 nm (below approximately 200 atoms) possess geometric and electronic structures different from bulk gold. When these gold clusters are protected by ligands, these clusters can be treated as chemical compounds. This review focuses on gold clusters protected by chalcogenate (thiolate, selenolate, or tellurolate) ligands and describes the methods by which these clusters are synthesized as well as their geometric/electronic structures and physical and chemical properties. Recent findings regarding ligand exchange reactions, which may be used to impart functionality to these compounds, are also described
Thiolate protected gold nanoclusters (NC) Aun(SR)m are a remarkable group of atomically precise stru...
Thiolate-protected gold clusters (Au<sub><i>n</i></sub>(SR)<sub><i>m</i></sub>) have attracted consi...
The thesis describes the synthesis of chiral thiolate-protected gold clusters. Au25(SR)18 clusters w...
Small metal clusters exhibit physical and chemical properties that differ substantially from those o...
Ligand exchange reactions can introduce new ligands onto clusters to afford new physical/chemical pr...
Ligand exchange reactions can introduce new ligands onto clusters to afford new physical/chemical pr...
Ligand exchange reactions can introduce new ligands onto clusters to afford new physical/chemical pr...
Unlike bulk materials, the physicochemical properties of nano-sized metal clusters can be strongly d...
Ligand exchange is a fundamental reaction of metal nanoparticles. Multiple symmetry and kinetic exch...
Ligand exchange is a fundamental reaction of metal nanoparticles. Multiple symmetry and kinetic exch...
In this thesis, bare and thiolate-protected gold nanoclusters and thiolated polymeric gold, silver ...
Ligand exchange reaction in monolayer-protected metal clusters is a versatile post-synthesis method ...
Most of the studies devoted to thiolated gold clusters suppose that their core and Au-S framework do...
Atomically precise thiolate-protected Au nanoclusters (NCs), i.e. Au<sub><i>m</i></sub>(SR)<sub><i>n...
The controllable preparation of ligand-protected clusters is still an unresolved problem, which may ...
Thiolate protected gold nanoclusters (NC) Aun(SR)m are a remarkable group of atomically precise stru...
Thiolate-protected gold clusters (Au<sub><i>n</i></sub>(SR)<sub><i>m</i></sub>) have attracted consi...
The thesis describes the synthesis of chiral thiolate-protected gold clusters. Au25(SR)18 clusters w...
Small metal clusters exhibit physical and chemical properties that differ substantially from those o...
Ligand exchange reactions can introduce new ligands onto clusters to afford new physical/chemical pr...
Ligand exchange reactions can introduce new ligands onto clusters to afford new physical/chemical pr...
Ligand exchange reactions can introduce new ligands onto clusters to afford new physical/chemical pr...
Unlike bulk materials, the physicochemical properties of nano-sized metal clusters can be strongly d...
Ligand exchange is a fundamental reaction of metal nanoparticles. Multiple symmetry and kinetic exch...
Ligand exchange is a fundamental reaction of metal nanoparticles. Multiple symmetry and kinetic exch...
In this thesis, bare and thiolate-protected gold nanoclusters and thiolated polymeric gold, silver ...
Ligand exchange reaction in monolayer-protected metal clusters is a versatile post-synthesis method ...
Most of the studies devoted to thiolated gold clusters suppose that their core and Au-S framework do...
Atomically precise thiolate-protected Au nanoclusters (NCs), i.e. Au<sub><i>m</i></sub>(SR)<sub><i>n...
The controllable preparation of ligand-protected clusters is still an unresolved problem, which may ...
Thiolate protected gold nanoclusters (NC) Aun(SR)m are a remarkable group of atomically precise stru...
Thiolate-protected gold clusters (Au<sub><i>n</i></sub>(SR)<sub><i>m</i></sub>) have attracted consi...
The thesis describes the synthesis of chiral thiolate-protected gold clusters. Au25(SR)18 clusters w...