Issue 7, 2023

Low temperature molten salt synthesis of noncentrosymmetric (NH4)3SbF3(NO3)3 and centrosymmetric (NH4)3SbF4(NO3)2

Abstract

Two fluorine antimony nitrates named (NH4)3SbF3(NO3)3 and (NH4)3SbF4(NO3)2 have been successfully synthesized by a low temperature molten salt method. Although these two title compounds possess NO3 groups and similar Sb-polyhedra, they exhibit completely different macroscopic centricities, (NH4)3SbF3(NO3)3 being noncentrosymmetric while (NH4)3SbF4(NO3)2 being centrosymmetric, which is induced by the discrepant coordination environments of Sb3+. Interestingly, the noncentrosymmetric (NH4)3SbF3(NO3)3 exhibits a strong second harmonic generation response (3.3 × KDP), a large birefringence (0.098@546 nm) and a large band gap (3.77 eV), indicating its potential as a UV nonlinear optical material. Detailed structure–property analysis confirms that the superior optical property is due to the synergistic effect of the planar π-conjugated NO3 groups and the stereochemically active lone pair containing Sb3+ cations.

Graphical abstract: Low temperature molten salt synthesis of noncentrosymmetric (NH4)3SbF3(NO3)3 and centrosymmetric (NH4)3SbF4(NO3)2

Supplementary files

Article information

Article type
Research Article
Submitted
10 Dec 2022
Accepted
28 Feb 2023
First published
01 Mar 2023

Inorg. Chem. Front., 2023,10, 2107-2114

Low temperature molten salt synthesis of noncentrosymmetric (NH4)3SbF3(NO3)3 and centrosymmetric (NH4)3SbF4(NO3)2

Q. Wang, J. Ren, D. Wang, L. Cao, X. Dong, L. Huang, D. Gao and G. Zou, Inorg. Chem. Front., 2023, 10, 2107 DOI: 10.1039/D2QI02637F

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