| Literature DB >> 27189869 |
Rajendra S Dhayal1,2, Yan-Ru Lin1, Jian-Hong Liao1, Yuan-Jang Chen3, Yu-Chiao Liu4, Ming-Hsi Chiang4, Samia Kahlal5, Jean-Yves Saillard5, C W Liu6.
Abstract
The synthesis and structural determination of a silver nanocluster [Ag20 {S2 P(OiPr)2 }12 ] (2), which contains an intrinsic chiral metallic core, is produced by reduction of one silver ion from the eight-electron superatom complex [Ag21 {S2 P(OiPr)2 }12 ](PF6 ) (1) by borohydrides. Single-crystal X-ray analysis displays an Ag20 core of pseudo C3 symmetry comprising a silver-centered Ag13 icosahedron capped by seven silver atoms. Its n-propyl derivative, [Ag20 {S2 P(OnPr)2 }12 ] (3), can also be prepared by the treatment of silver(I) salts and dithiophosphates in a stoichiometric ratio in the presence of excess amount of [BH4 ](-) . Crystal structure analyses reveal that the capping silver-atom positions relative to their icosahedral core are distinctly different in 2 and 3 and generate isomeric, chiral Ag20 cores. Both Ag20 clusters display an emission maximum in the near IR region. DFT calculations are consistent with a description within the superatom model of an 8-electron [Ag13 ](5+) core protected by a [Ag7 {S2 P(OR)2 }12 ](5-) external shell. Two additional structural variations are predicted by DFT, showing the potential for isomerism in such [Ag20 {S2 P(OR)2 }12 ] species.Entities:
Keywords: chirality; isomerism; nanoclusters; silver; superatoms
Year: 2016 PMID: 27189869 DOI: 10.1002/chem.201602275
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236