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Crystal structure of quaternary selenides Tl2CdSi(Ge)3Se8
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1  Department of Chemistry, Ecology and Pharmacy, Lesya Ukrainka Volyn National University
Academic Editor: Younes Hanifehpour

Abstract:

Quaternary compounds Tl2CdSi3Se8 and Tl2CdGe3Se8 were found at the Tl2CdSi(Ge)Se4–Si(Ge)Se2 sections of the quasi-ternary systems Tl2Se–CdSe–Si(Ge)Se2 by XRD and microstructure analysis methods.

Similar quaternary chalcogenides AI2BIIDIV3X8 were reported earlier with alkaline elements (AI = Cs, Rb, K, Na; ВII = Mg, Mn, Zn, Cd, Hg; DIV = Ge, Sn; Х = S, Se, Te. Several types of crystal structures were observed in this family of compounds, orthorhombic (S.G. Р212121), monoclinic (S.G. P21/c or P21/n), cubic Pa-3. Additionally, similar compositions Cu(Ag)2CdSn3S8 were found in the Cu(Ag)2S–CdS–SnS2 systems. The Cu2CdSn3S8 compound is a synthetic analoque of the natural mineral rhodostannite Cu2FeSn3S8 and crystallizes in the tetragonal S.G. I41/a. The Ag2CdSn3S8 crystal structure refines well in both tetragonal rhodostannite type (S.G. I41/a) and cubic chalcospinel type (S.G. Fd–3m).

The Tl2CdDIV3X8 compounds (MIV = Si, Ge; X = Se) are closer to the quaternary phases with alkaline metals with orthorhombic structure. Their structure was determined in the isotropic approximation using the Cs2CdGe3Se8 structure as a model, S.G. Р212121 with the lattice parameters a=0.7485(1), b=1.2117(3), c=1.7134(3) nm, RI=0.0953 (Tl2CdSi3Se8) and a=0.7602(3), b=1.2071(2), c=1.7474(2) nm, RI=0.1204 (Tl2CdGe3Se8).

Each layer 2/[CdDIV3Se8]2− consists of chains 1/[CdDIVSe6]6– that are linked by alternating [CdSe4] and [DIVSe4] tetrahedra by corner sharing along the direction a. Moreover, the adjacent chains are connected into a layer by [DIV2Se6]4− dimers by corner sharing along the direction c.

Keywords: Quaternary chalcogenides; crystal structure; isotropic approximation.
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