A 2 Hg x (SeO 3 ) y (A = K, Rb, Cs): Three Alkali Metal Mercury Selenites Featuring Unique 1D [HgO m (SeO 3 ) n ] ∞ Chains

Herein, three alkali metal mercury selenites, K Hg (SeO ) , Rb Hg (SeO ) , and Cs Hg (SeO ) , were successfully obtained by a hydrothermal method. The three compounds featured same one-dimensional (1D) [HgO (SeO ) ] chain structure that consisting of distorted Hg-O polyhedra and SeO triangular pyram...

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Veröffentlicht in:Inorganic chemistry 2023-12, Vol.62 (51), p.21173-21180
Hauptverfasser: Ren, Jinxuan, Cui, Hui, Cheng, Linhong, Zhou, Yuqiao, Dong, Xuehua, Gao, Daojiang, Huang, Ling, Cao, Liling, Ye, Ning
Format: Artikel
Sprache:eng
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Zusammenfassung:Herein, three alkali metal mercury selenites, K Hg (SeO ) , Rb Hg (SeO ) , and Cs Hg (SeO ) , were successfully obtained by a hydrothermal method. The three compounds featured same one-dimensional (1D) [HgO (SeO ) ] chain structure that consisting of distorted Hg-O polyhedra and SeO triangular pyramids with stereochemically active lone pair (SCALP) electrons. Interestingly, the rich coordination environment of Hg atoms and the size difference of alkali metal cations lead to diverse arrangement of SeO groups, which makes them exhibit different birefringence. The band gaps of the three compounds indicate that they are potential ultraviolet (UV) optical materials. Detailed theoretical calculations demonstrate that the combined effects of SeO triangular pyramids and Hg-O polyhedra are responsible for the optical characteristics of the reported compounds.
ISSN:0020-1669
1520-510X
DOI:10.1021/acs.inorgchem.3c03136