AI Article Synopsis

  • Researchers created pure naked silver cluster ions from specific protected clusters without contamination.
  • The study showed that activating the hydride and phosphine co-protected cluster [Ag(TPP)H] results in the exclusive formation of naked silver ions (Ag).
  • It highlights the ability to generate different naked cluster ions through fragmentation from varied precursor clusters, potentially advancing knowledge in nanoscience and technology.

Article Abstract

We report the formation of naked cluster ions of silver of specific nuclearities, uncontaminated by other cluster ions, derived from monolayer-protected clusters. The hydride and phosphine co-protected cluster, [Ag(TPP)H] (TPP, triphenylphosphine), upon activation produces the naked cluster ion, Ag, exclusively. The number of metal atoms present in the naked cluster is almost the same as that in the parent material. Two more naked cluster ions, Ag and Ag, were also formed starting from two other protected clusters, [Ag(DPPE)H] and [Ag(DPPE)H], respectively (DPPE, 1,2-bis(diphenylphosphino)ethane). By systematic fragmentation, naked clusters of varying nuclei are produced from Ag to Ag selectively, with systematic absence of Ag, Ag, and Ag. A seemingly odd number of cluster ions are preferred due to the stability of the closed electronic shells. Sequential desorption of dihydrogen occurs from the cluster ion, AgH, during the formation of Ag. A comparison of the pathways in the formation of similar naked cluster ions starting from two differently ligated clusters has been presented. This approach developed bridges the usually distinct fields of gas-phase metal cluster chemistry and solution-phase metal cluster chemistry. We hope that our findings will enrich nanoscience and nanotechnology beyond the field of clusters.

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Source
http://dx.doi.org/10.1021/acsnano.7b05406DOI Listing

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