119Sn Mössbauer spectroscopy and chemical bonding in AuTSn2 (T = Ni, Cu, Pd)

Stefan Lange, Falko M. Schappacher, Dirk Johrendt, Tom Nilges, Rolf Dieter Hoffmann, Rainer Pöttgen

Research output: Contribution to journalArticlepeer-review

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Abstract

The stannides AuTSn2 (T = Ni, Cu, Pd) were synthesized by reacting the elements in sealed silica ampoules at 1300 K and subsequent annealing sequences. The compounds were studied by X-ray powder diffraction. The structure of the new stannide AuPdSn2 was refined from single crystal diffractometer data: P63/ mmc, a = 415.8(2), c = 557.1(2) pm, wR2 = 0.0400, 88 F2 values, and 6 variable parameters. These ternary stannides derive from the NiAs structure. For AuPdSn2 only a disordered structure with a random distribution of gold and palladium on the nickel site was observed. AuNiSn2 and AuCuSn2, however, are ordered superstructures, space group P3m1. 119Sn Mössbauer spectra show single signals at isomer shifts of 2.00(1) (Ni), 2.10(1) (Pd), and 2.26(1) mm/s (Cu), indicating the highest s electron density at the tin nuclei of AuCuSn2. AuNiSn2, where the tin atoms show the strongest displacement from the subcell mirror plane reveals the largest quadrupole splitting of 0.60(1) mm/s. Chemical bonding in AuSn and AuNiSn 2 was compared on the basis of TB-LMTO-ASA electronic structure calculations. The latter reveal strong Au-Ni and Ni-Sn bonding in the ordered structure of AuNiSn2.

Original languageEnglish
Pages (from-to)1432-1436
Number of pages5
JournalZeitschrift fur Anorganische und Allgemeine Chemie
Volume632
Issue number8-9
DOIs
StatePublished - 2006
Externally publishedYes

Keywords

  • Chemical bonding
  • Mössbauer spectroscopy
  • Stannides
  • Superstructure

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