| Literature DB >> 27809398 |
Yu Wang1, Haifeng Su1, Liting Ren1, Sami Malola2, Shuichao Lin1, Boon K Teo1, Hannu Häkkinen2, Nanfeng Zheng1.
Abstract
The synthesis, structure, substitution chemistry, and optical properties of the gold-centered cubic monocationic cluster [Au@Ag8 @Au6 (C≡Ct Bu)12 ]+ are reported. The metal framework of this cluster can be described as a fragment of a body-centered cubic (bcc) lattice with the silver and gold atoms occupying the vertices and the body center of the cube, respectively. The incorporation of alkali metal atoms gave rise to [Mn Ag8-n Au7 (C≡Ct Bu)12 ]+ clusters (n=1 for M=Na, K, Rb, Cs and n=2 for M=K, Rb), with the alkali metal ion(s) presumably occupying the vertex site(s), whereas the incorporation of copper atoms produced [Cun Ag8 Au7-n (C≡Ct Bu)12 ]+ clusters (n=1-6), with the Cu atom(s) presumably occupying the capping site(s). The parent cluster exhibited strong emission in the near-IR region (λmax =818 nm) with a quantum yield of 2 % upon excitation at λ=482 nm. Its photoluminescence was quenched upon substitution with a Na+ ion. DFT calculations confirmed the superatom characteristics of the title compound and the sodium-substituted derivatives.Entities:
Keywords: alkali metals; alkynes; doping; nanoclusters; superatoms
Year: 2016 PMID: 27809398 DOI: 10.1002/anie.201609144
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336