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Intermetallic Compound Re2Ga9Ge with Re- and Ge-Embedded Gallium Clusters: Synthesis, Crystal Structure, Chemical Bonding, and Physical Properties

  • Maxim S. Likhanov
  • , Valeriy Yu Verchenko
  • , Vladislav O. Zhupanov
  • , Zheng Wei
  • , Evgeny V. Dikarev
  • , Alexey N. Kuznetsov
  • , Andrei V. Shevelkov
  • Lomonosov Moscow State University
  • National Institute of Chemical Physics and Biophysics, Tallinn
  • SUNY Albany
  • N. S. Kurnakov Institute of General and Inorganic Chemistry Ras

Research output: Contribution to journalArticlepeer-review

5 Scopus citations

Abstract

Transition metal-based endohedral cluster intermetallic compounds are interesting electron phases, which frequently exhibit superconductivity with a peculiar interplay between the critical temperature and valence electron count. We present a new Re-based endohedral gallium cluster compound, Re2Ga9Ge. Its unique crystal structure (P42/mmc space group, a = 8.0452(3) Å, c = 6.7132(2) Å) is built by two types of gallium polyhedra: monocapped Archimedean antiprisms centered by rhenium atoms and tetrahedra containing a main-group element inside. The analysis of chemical bonding shows the presence of localized pairwise interactions between the p-block elements and the formation of multicenter bonds with the participation of d-orbitals of rhenium. In the electronic band structure, the Fermi level is located in a narrow pseudogap indicating the optimum band filling and thus explaining the virtual absence of a homogeneity range. The compound exhibits Pauli paramagnetism and metallic properties with unexpectedly low thermal conductivity. A sharp anomaly observed on the magnetic susceptibility and resistivity curves presumably indicates the electronic phase transition accompanied by charge ordering at the characteristic temperature of T ∗ = 271 K in zero magnetic field.

Original languageEnglish
Pages (from-to)568-578
Number of pages11
JournalInorganic Chemistry
Volume61
Issue number1
DOIs
StatePublished - Jan 10 2022

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