Metalloid gold clusters have unique properties with respect to size and structure and are key intermediates in studying transitions between molecular compounds and the bulk phase of the respective metal. In the following, the synthesis of the all-phosphine protected metalloid cluster Au$_{20}$ ($^{t}$ Bu$_{3}$ P)$_{8}$, solely built from gold atoms in the oxidation state of 0 is reported. Single-crystal X-ray analysis revealed a highly symmetric hollow cube-octahedral arrangement of the gold atoms, resembling gold bulk structure. Quantum-chemical calculations illustrated the cluster can be described as a 20-electron superatom. Optical properties of the compound have shown molecular-like behavior
The free-standing Au20 cluster has a unique tetrahedral shape and a large HOMO-LUMO (highest occupie...
The discovery of the unique catalytic effects of gold nanoparticles on oxide substrates[1] has stimu...
New low-energy atomic structures of the thiolate-protected gold nanoparticle Au68(SH)32 are uncovere...
Unlike bulk materials, the physicochemical properties of nano-sized metal clusters can be strongly d...
The 20-nanogold cluster Au-20 exhibits a large variety of two- and three-dimensional isomeric forms....
Small metal clusters exhibit physical and chemical properties that differ substantially from those o...
In the past few years, the interest in the study of atomically precise metal nanoclusters has grown ...
The present work opens with an acknowledgement to the research activity performed by Luciana Naldini...
The main body of this thesis is devoted to the investigation of the quasiparticle spectra of neutral...
Atomically-precise gold nanoclusters have gained wide attentions due to their unique quantum state ...
The synthesis and characterization of the clusters Au13[PPh3]4[S(CH2)11CH3]2Cl2 (1) and Au13[PPh3]4[...
Gold nanomolecules are atomically monodisperse nano-particles having a precise number of gold atoms ...
Nanoclusters are promising materials for catalysis and sensing due to their large surface areas and ...
Metal clusters have been a subject of interdisciplinary research for many years as they act as a bri...
Synchrotron XPS was used to investigate a series of chemically-synthesised, atomically-precise gold ...
The free-standing Au20 cluster has a unique tetrahedral shape and a large HOMO-LUMO (highest occupie...
The discovery of the unique catalytic effects of gold nanoparticles on oxide substrates[1] has stimu...
New low-energy atomic structures of the thiolate-protected gold nanoparticle Au68(SH)32 are uncovere...
Unlike bulk materials, the physicochemical properties of nano-sized metal clusters can be strongly d...
The 20-nanogold cluster Au-20 exhibits a large variety of two- and three-dimensional isomeric forms....
Small metal clusters exhibit physical and chemical properties that differ substantially from those o...
In the past few years, the interest in the study of atomically precise metal nanoclusters has grown ...
The present work opens with an acknowledgement to the research activity performed by Luciana Naldini...
The main body of this thesis is devoted to the investigation of the quasiparticle spectra of neutral...
Atomically-precise gold nanoclusters have gained wide attentions due to their unique quantum state ...
The synthesis and characterization of the clusters Au13[PPh3]4[S(CH2)11CH3]2Cl2 (1) and Au13[PPh3]4[...
Gold nanomolecules are atomically monodisperse nano-particles having a precise number of gold atoms ...
Nanoclusters are promising materials for catalysis and sensing due to their large surface areas and ...
Metal clusters have been a subject of interdisciplinary research for many years as they act as a bri...
Synchrotron XPS was used to investigate a series of chemically-synthesised, atomically-precise gold ...
The free-standing Au20 cluster has a unique tetrahedral shape and a large HOMO-LUMO (highest occupie...
The discovery of the unique catalytic effects of gold nanoparticles on oxide substrates[1] has stimu...
New low-energy atomic structures of the thiolate-protected gold nanoparticle Au68(SH)32 are uncovere...