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Pentanary Oxythiogermanates Ba 3 MGe 3 O 2 S 8 (M = Ca, Zn) Featuring [Ge 3 O 2 S 8 ] 8- Trimers and {[MGe 3 O 2 S 8 ] 6- } ∞ Chains: Structural Chemistry and Physical Properties.

Xin-Xin FanMei YangWen-Dong YaoWenfeng ZhouTengfei JiangWenlong LiuSheng-Ping Guo
Published in: Inorganic chemistry (2024)
Oxychalcogenides are increasingly attracting wide attention because they contain multiple anions that may combine the advantages of oxides and chalcogenides. In this work, two new pentanary oxythiogermanates, Ba 3 MGe 3 O 2 S 8 [M = Ca ( 1 ), Zn ( 2 )], were synthesized by a high-temperature solid-state reaction. They crystallize in the orthorhombic space group Pnma , and their structures contain isolated [Ge 3 O 2 S 8 ] 8- units constructed by one [GeO 2 S 2 ] and two [GeOS 3 ] tetrahedra that link with M 2+ ions to build the {[MGe 3 O 2 S 8 ] 6- } ∞ chain, representing a new type of oxythiogermanate. Notably, a [ZnS 5 ] square pyramid exists in 2 . Their structural chemistry and relationship with relevant structures are analyzed. 1 and 2 exhibit wide band gaps of 3.93 and 2.63 eV, birefringences of 0.100 and 0.089 at 2100 nm, respectively, and also obvious photocurrent responses. This work may be extended to a family of AE 3 M II M IV 3 O 2 Q 8 (AE = alkali-earth metal; M II = Ca, Zn, Cd, Hg; M IV = Si, Ge, Sn; Q = S, Se), and further systematic survey on them can be performed to enrich the study of multifunctional oxychalcogenides.
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