Journal of the American Chemical Society · 2015 · 256 citations · 37 references
EngineeringNanoclusterMetal NanoparticlesSolid-state ChemistryPt AtomsChemistryChemical EngineeringSilver-thiolate OverlayerPlasmonic MaterialMaterials ScienceInorganic ChemistryCluster ScienceTotal StructureNanotechnologyElectronic Structure AnalysisCrystallographyPlasmonic CatalysisNanomaterialsCondensed Matter PhysicsCluster ChemistryGeometric Chirality
With the incorporation of Pd or Pt atoms, thiolated Ag-rich 25-metal-atom nanoclusters were successfully prepared and structurally characterized for the first time. With a composition of [PdAg24(SR)18](2-) or [PtAg24(SR)18](2-), the obtained 25-metal-atom nanoclusters have a metal framework structure similar to that of widely investigated Au25(SR)18. In both clusters, a M@Ag12 (M = Pd, Pt) core is capped by six distorted dimeric -RS-Ag-SR-Ag-SR- units. However, the silver-thiolate overlayer gives rise to a geometric chirality at variance to Au25(SR)18. The effect of doping on the electronic structure was studied through measured optical absorption spectra and ab initio analysis. This work demonstrates that modulating electronic structures by transition-metal doping is expected to provide effective means to manipulate electronic, optical, chemical, and catalytic properties of thiolated noble metal nanoclusters.
37
Structure of a Thiol Monolayer-Protected Gold Nanoparticle at 1.1 A Resolution
Pablo D. Jadzinsky, Guillermo Calero, Christopher J. Ackerson et al. · Science · 2007 · 2.6K citations
Ultrastable silver nanoparticles
Anil Desireddy, Brian E. Conn, Jingshu Guo et al. · Nature · 2013 · 1.1K citations
Materials Science, Nanoparticles, Nanoparticle Characterization +8