Issue 21, 2022

[C(NH2)3]BiCl2SO4: an excellent birefringent material obtained by multifunctional group synergy

Abstract

Herein, a multifunctional group synergistic strategy was proposed to develop an excellent organic–inorganic hybrid guanidine sulfate material [C(NH2)3]BiCl2SO4 (GuBiCl2SO4), which was constructed with three types of functional groups including planar triangle π-conjugated [C(NH2)3]+ cations, [BiCl2O4]7− anion polyhedra with stereochemical-active lone pairs and [SO4]2− tetrahedra. GuBiCl2SO4 possesses a large birefringence (0.143@546 nm), much larger than those of other representative Bi-based/Gu-based compounds containing tetrahedral anionic birefringent crystals. Interestingly, the title compound also displays light-blue emission, which indicates that it is an outstanding bifunctional optical material. The computational analysis revealed that the broadband emission of GuBiCl2SO4 can be attributed to charge transitions from organic [C(NH2)3]+ cations to [BiCl2O4]7− anion polyhedra and the large birefringence stems from the cooperative effect of the planar triangle π-conjugated [C(NH2)3]+ cations, [BiCl2O4]7− anion polyhedra and [SO4]2− distorted tetrahedra.

Graphical abstract: [C(NH2)3]BiCl2SO4: an excellent birefringent material obtained by multifunctional group synergy

Supplementary files

Article information

Article type
Research Article
Submitted
02 Aug 2022
Accepted
06 Sep 2022
First published
07 Sep 2022

Inorg. Chem. Front., 2022,9, 5572-5578

[C(NH2)3]BiCl2SO4: an excellent birefringent material obtained by multifunctional group synergy

X. Dong, Z. Zhang, L. Huang and G. Zou, Inorg. Chem. Front., 2022, 9, 5572 DOI: 10.1039/D2QI01675C

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