Precise control of the growth of thiolate-protected gold nanoclusters is a prerequisite for their applications in catalysis and bioengineering. Here, we bring to bear a new series of thiolateprotected nanoclusters with a unique growth pattern, i.e., Au20(SR)16, Au28(SR)20, Au36(SR)24, Au44(SR)28, and Au52(SR)32. These nanoclusters can be viewed as resulting from the stepwise addition of a common structural motif [Au8(SR)4]. The highly negative values of the nucleus-independent chemical shift (NICS) in the center of the tetrahedral Au4 units suggest that the overall stabilities of these clusters stem from the local stability of each tetrahedral Au4 unit. Generalization of this growth-pattern rule to large-sized nanoclusters allows us to iden...
Doctor of PhilosophyDepartment of ChemistryChristine M. AikensThis body of work describes a theoreti...
The larger size gold nanoparticles typically adopt a face-centered cubic (fcc) atomic packing, while...
Gold nanomolecules are atomically monodisperse nano-particles having a precise number of gold atoms ...
Precise control of the growth of thiolate-protected gold nanoclusters is a prerequisite for their ap...
Unlike bulk materials, the physicochemical properties of nano-sized metal clusters can be strongly d...
New low-energy atomic structures of the thiolate-protected gold nanoparticle Au68(SH)32 are uncovere...
Pathways for the formation of gold thiolate complexes from gold(III) chloride precursors AuCl4– and ...
A structure evolution map of face-centered cubic (fcc)-structured thiolate-ligand protected gold nan...
Routine preparation of thiolate-protected gold nanomolecules involves, most commonly, straight-chain...
Atomic structure of a recently synthesized ligand-covered cluster Au<sub>24</sub>(SR)<sub>20</sub> [...
Understanding how gold nanoclusters nucleate from Au<sup>I</sup>SR complexes necessitates the struct...
For two decades, Au144(SR)60 has been one of the most studied and used thiolate (SR) protected gold ...
Properties of small metal nanoclusters rely on the exact arrangement of a few atoms. Minor structura...
We have analyzed the structures of two medium-sized thiolateprotected gold nanoparticles (RS-AuNPs) ...
Despite 20 years of progress in synthesizing thiolated gold nanoclusters (Au NCs), the knowledge of ...
Doctor of PhilosophyDepartment of ChemistryChristine M. AikensThis body of work describes a theoreti...
The larger size gold nanoparticles typically adopt a face-centered cubic (fcc) atomic packing, while...
Gold nanomolecules are atomically monodisperse nano-particles having a precise number of gold atoms ...
Precise control of the growth of thiolate-protected gold nanoclusters is a prerequisite for their ap...
Unlike bulk materials, the physicochemical properties of nano-sized metal clusters can be strongly d...
New low-energy atomic structures of the thiolate-protected gold nanoparticle Au68(SH)32 are uncovere...
Pathways for the formation of gold thiolate complexes from gold(III) chloride precursors AuCl4– and ...
A structure evolution map of face-centered cubic (fcc)-structured thiolate-ligand protected gold nan...
Routine preparation of thiolate-protected gold nanomolecules involves, most commonly, straight-chain...
Atomic structure of a recently synthesized ligand-covered cluster Au<sub>24</sub>(SR)<sub>20</sub> [...
Understanding how gold nanoclusters nucleate from Au<sup>I</sup>SR complexes necessitates the struct...
For two decades, Au144(SR)60 has been one of the most studied and used thiolate (SR) protected gold ...
Properties of small metal nanoclusters rely on the exact arrangement of a few atoms. Minor structura...
We have analyzed the structures of two medium-sized thiolateprotected gold nanoparticles (RS-AuNPs) ...
Despite 20 years of progress in synthesizing thiolated gold nanoclusters (Au NCs), the knowledge of ...
Doctor of PhilosophyDepartment of ChemistryChristine M. AikensThis body of work describes a theoreti...
The larger size gold nanoparticles typically adopt a face-centered cubic (fcc) atomic packing, while...
Gold nanomolecules are atomically monodisperse nano-particles having a precise number of gold atoms ...