Intermediate-Valence Ytterbium Compound Yb4Ga24Pt9: Synthesis, Crystal Structure, and Physical Properties

The title compound was synthesized by a reaction of the elemental educts in a corundum crucible at 1200 °C under an Ar atmosphere. The excess of Ga used in the initial mixture served as a flux for the subsequent crystal growth at 600 °C. The crystal structure of Yb4Ga24Pt9 was determined from single...

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Veröffentlicht in:Inorganic chemistry 2017-08, Vol.56 (15), p.9343-9352
Hauptverfasser: Sichevych, Olga, Prots, Yurii, Utsumi, Yuki, Akselrud, Lev, Schmidt, Marcus, Burkhardt, Ulrich, Coduri, Mauro, Schnelle, Walter, Bobnar, Matej, Wang, Yu-Ting, Wu, Yu-Han, Tsuei, Ku-Ding, Tjeng, Liu Hao, Grin, Yuri
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Sprache:eng
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Zusammenfassung:The title compound was synthesized by a reaction of the elemental educts in a corundum crucible at 1200 °C under an Ar atmosphere. The excess of Ga used in the initial mixture served as a flux for the subsequent crystal growth at 600 °C. The crystal structure of Yb4Ga24Pt9 was determined from single-crystal X-ray diffraction data: new prototype of crystal structure, space group C2/m, Pearson symbol mS74, a = 7.4809(1) Å, b = 12.9546(2) Å, c = 13.2479(2) Å, β = 100.879(1)°, V = 1260.82(6) Å3, R F = 0.039 for 1781 observed reflections and 107 variable parameters. The structure is described as an ABABB stacking of two slabs with trigonal symmetry and compositions Yb4Ga6 (A) and Ga12Pt6 (B). The hard X-ray photoelectron spectrum (HAXPES) of Yb4Ga24Pt9 shows both Yb2+ and Yb3+ contributions as evidence of an intermediate valence state of ytterbium. The evaluated Yb valence of ∼2.5 is in good agreement with the results obtained from the magnetic susceptibility measurements. The compound is a bad metallic conductor.
ISSN:0020-1669
1520-510X
DOI:10.1021/acs.inorgchem.7b01530