4.5 Article

Ferrocene decorated homoleptic silver(I) clusters: Synthesis, structure, and their electrochemical behaviour

Journal

JOURNAL OF ORGANOMETALLIC CHEMISTRY
Volume 948, Issue -, Pages -

Publisher

ELSEVIER SCIENCE SA
DOI: 10.1016/j.jorganchem.2021.121923

Keywords

Dithiophosphonato; Ferrocenyl; Silver(I) cluster; Homoleptic; Dichalcogenide; Cyclic voltammetry

Funding

  1. Department of Science and Technology, DST (SERB) [YSS/2015/001105]
  2. UGC Start-Up-Grant [F. 30-318/2016_BSR]
  3. CSIR
  4. DST [DST/INSPIRE Fellowship/[IF190052]]

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A silver(I) ferrocenyl dithiophosphonato 1D polymer was synthesized through a ligand exchange reaction, generating two different silver-sulfur-phosphorus clusters. The structures of these clusters were confirmed by single crystal X-ray crystallographic analyses, revealing distinct features in their structural arrangements.
Silver(I) ferrocenyl dithiophosphonato [Ag{S2P(OiPr)Fc}](n) I, [Fc = Fe(eta(5) -C5H4)(eta(5)-C5H4)] 1D polymer was yielded via a ligand exchange reaction between silver nanocluster [Ag-21(S2P((OPr2)-Pr-i)(12))]PF6 and monoanionic [S2P((OPr)-Pr-i)Fc](-) ligand. As per molecular stoichiometry of 1, a direct reaction between [Ag(CH3CN)(4)]PF6 and [S2P((OPr)-Pr-i)Fc](-) was performed in methanol solvent and surprisingly, generate a tetrahedral Ag-4{S2P((OPr)-Pr-i)Fc}(4) 2 cluster instead of 1. Both (1 and 2) clusters are the novel example of homoleptic Ag(I) complexes supported by ferrocenyl dithiophosphonates. Molecular structure of these clusters was unequivocally established by single crystal X-ray crystallographic analyses and supported by the ESI-MS, and H-1 and P-31 NMR spectroscopy. Structural elucidations reveal that compound 1 has subsequently Ag2S2 square plane and Ag2S4P2 twisted boat units to build a long chain 1D polymer. The cluster 2 exhibits with a tetrahedral Ag(I) core framed by four [S2P((OPr)-Pr-i)Fc](-) ligands. interstingly, the [S2P((OPr)-Pr-i)Fc](-) ligand display a trimetallic triconnective (eta(3); mu(1), mu(2)) bonding pattern in both molecules. The electrochemical behaviours of both compounds (1 and 2) were studied by using cyclic voltammetry, which shows a single wave for all the peripheral ferrocenes and implies negligible electrostatic factor between all ferrocene moieties. (C) 2021 Elsevier B.V. All rights reserved.

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