Despite the great advances in synthesis and structural determination of atomically precise, thiolate-protected metal nanoclusters, our understanding of the driving forces for their colloidal stabilization is very limited. Currently there is a lack of models able to describe the thermodynamic stability of these 'magic-number' colloidal nanoclusters as a function of their atomic-level structural characteristics. Herein, we introduce the thermodynamic stability theory, derived from first principles, which is able to address stability of thiolate-protected metal nanoclusters as a function of the number of metal core atoms and thiolates on the nanocluster shell. Surprisingly, we reveal a fine energy balance between the core cohesive energy and t...
Precise control of the growth of thiolate-protected gold nanoclusters is a prerequisite for their ap...
Gold nanomolecules are atomically monodisperse nano-particles having a precise number of gold atoms ...
Gold nanomolecules are atomically monodisperse nano-particles having a precise number of gold atoms ...
Though new nanomaterials are synthesized every day for applications ranging from targeted drug deliv...
Noble metal nanoclusters (NCs) protected with thiolate ligands have been of interest because of thei...
Properties of small metal nanoclusters rely on the exact arrangement of a few atoms. Minor structura...
Although nanomaterials find use in most technologies, a complete fundamental understanding of their ...
Unlike bulk materials, the physicochemical properties of nano-sized metal clusters can be strongly d...
Properties of small metal nanoclusters rely on the exact arrangement of a few atoms. Minor structura...
Properties of small metal nanoclusters rely on the exact arrangement of a few atoms. Minor structura...
Ligand-stabilized, atomically precise gold nanoclusters with a metal core of a uniform size of just ...
The superatom model for nanoparticle structure is shown to be inadequate for the prediction of the t...
The superatom model for nanoparticle structure is shown to be inadequate for the prediction of the t...
Synthesis, characterization, and functionalization of self-assembled, ligand-stabilized gold nanopar...
Precise control of the growth of thiolate-protected gold nanoclusters is a prerequisite for their ap...
Precise control of the growth of thiolate-protected gold nanoclusters is a prerequisite for their ap...
Gold nanomolecules are atomically monodisperse nano-particles having a precise number of gold atoms ...
Gold nanomolecules are atomically monodisperse nano-particles having a precise number of gold atoms ...
Though new nanomaterials are synthesized every day for applications ranging from targeted drug deliv...
Noble metal nanoclusters (NCs) protected with thiolate ligands have been of interest because of thei...
Properties of small metal nanoclusters rely on the exact arrangement of a few atoms. Minor structura...
Although nanomaterials find use in most technologies, a complete fundamental understanding of their ...
Unlike bulk materials, the physicochemical properties of nano-sized metal clusters can be strongly d...
Properties of small metal nanoclusters rely on the exact arrangement of a few atoms. Minor structura...
Properties of small metal nanoclusters rely on the exact arrangement of a few atoms. Minor structura...
Ligand-stabilized, atomically precise gold nanoclusters with a metal core of a uniform size of just ...
The superatom model for nanoparticle structure is shown to be inadequate for the prediction of the t...
The superatom model for nanoparticle structure is shown to be inadequate for the prediction of the t...
Synthesis, characterization, and functionalization of self-assembled, ligand-stabilized gold nanopar...
Precise control of the growth of thiolate-protected gold nanoclusters is a prerequisite for their ap...
Precise control of the growth of thiolate-protected gold nanoclusters is a prerequisite for their ap...
Gold nanomolecules are atomically monodisperse nano-particles having a precise number of gold atoms ...
Gold nanomolecules are atomically monodisperse nano-particles having a precise number of gold atoms ...