(CN4H7)2SO4·H2O: high-performance metal-free ultraviolet birefringent crystal with KBBF-like configuration

Abstract

The advancement of high-quality ultraviolet (UV) birefringent crystalline materials is pivotal in advancing optoelectronic functional crystal technology. The outstanding birefringent fundamental group is indispensable for synthesizing target crystals that meet high-performance optical requirements. This study selected the [CN4H7]+ group with a wide HOMO–LUMO gap and substantial polarizability anisotropy. Furthermore, by modifying the KBe2BO3F2 (KBBF) template structure at the molecular level, the first metal-free sulfate (CN4H7)2SO4·H2O was successfully synthesized. This crystal effectively balanced the short UV cut-off edge (212 nm) and large birefringence (0.132@546.1 nm). Theoretical calculations indicated that [CN4H7]+ group and its favorable arrangement were primarily responsible for the large birefringence. Our study reveals that coupling the [CN4H7]+ group to tetrahedral frameworks serves as an effective approach to engineering UV birefringent crystals with enhanced optical anisotropy.

Graphical abstract: (CN4H7)2SO4·H2O: high-performance metal-free ultraviolet birefringent crystal with KBBF-like configuration

Supplementary files

Article information

Article type
Research Article
Submitted
20 Mar 2025
Accepted
28 Apr 2025
First published
09 May 2025

Inorg. Chem. Front., 2025, Advance Article

(CN4H7)2SO4·H2O: high-performance metal-free ultraviolet birefringent crystal with KBBF-like configuration

X. Hao, S. Xie, R. Wang, C. Lin, L. Wu, G. Peng, T. Yan, N. Ye and M. Luo, Inorg. Chem. Front., 2025, Advance Article , DOI: 10.1039/D5QI00819K

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