Back to Search Start Over

Surface modifications of eight-electron palladium silver superatomic alloys.

Authors :
Barik, Subrat Kumar
Chen, Chih-Yuan
Chiu, Tzu-Hao
Ni, Yu-Rong
Gam, Franck
Chantrenne, Isaac
Kahlal, Samia
Saillard, Jean-Yves
Liu, C. W.
Source :
Communications Chemistry. 11/19/2022, Vol. 5 Issue 1, p1-12. 12p.
Publication Year :
2022

Abstract

Atomically precise thiolate-protected coinage metal nanoclusters and their alloys are far more numerous than their selenium congeners, the synthesis of which remains extremely challenging. Herein, we report the synthesis of a series of atomically defined dithiophosph(in)ate protected eight-electron superatomic palladium silver nanoalloys [PdAg20{S2PR2}12], 2a–c (where R = OiPr, a; OiBu, b; Ph, c) via ligand exchange and/or co-reduction methods. The ligand exchange reaction on [PdAg20{S2P(OnPr)2}12], 1, with [NH4{Se2PR2}12] (where R = OiPr, or OnPr) leads to the formation of [PdAg20{Se2P(OiPr)2}12] (3) and [PdAg20{Se2P(OnPr)2}12] (4), respectively. Solid state structures of 2a, 2b, 3 and 4 unravel different PdAg20 metal frameworks from their parent cluster, originating from the different distributions of the eight-capping silver(I) atoms around a Pd@Ag12 centered icosahedron with C2,D3,Th and Th symmetries, respectively. Surprisingly ambient temperature crystallization of the reaction product 3 obtained by the ligand exchange reaction on 1 has resulted in the co-crystallization of two isomers in the unit cell with overall T (3a) and C3 (3b) symmetries, respectively. To our knowledge, this is the first ever characterized isomeric pair among the selenolate-protected NCs. Density functional theory (DFT) studies further rationalize the preferred geometrical isomerism of the PdAg20 core. Atomically and structurally precise silver nanoclusters hold great potential for catalytic and optoelectronic applications. Here, the authors synthesize and characterize a series of atomically defined dithio- and diselenophosphate-protected eight-electron superatomic palladium-doped silver nanoclusters, including an unprecedented pair of selenolate-protected isomers. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
23993669
Volume :
5
Issue :
1
Database :
Academic Search Index
Journal :
Communications Chemistry
Publication Type :
Academic Journal
Accession number :
160308210
Full Text :
https://doi.org/10.1038/s42004-022-00769-2