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Designing nonlinear optical (NLO) materials that simultaneously exhibit enhanced second-harmonic generation (SHG), moderate birefringence (Δ n ), and short-wavelength ultraviolet (UV) transparency remains a significant challenge. This study presents a stepwise structural regulation strategy using the International Zeolite Association (ABW)-type zeolite NH 4 BePO 4 (I) as the parent material. By systematically modulating the anionic units, we successfully synthesized two compounds: KBe 2 (HPO 3 ) 2 F (II) and NH 4 Be 2 (OH)(SeO 3 ) 2 ·H 2 O (III). Compound III represents a breakthrough, demonstrating an SHG intensity 4.0 times greater than that of KH 2 PO 4, a birefringence of 0.080 at 546 nm, and a UV cutoff at 203 nm. The enhanced optical anisotropy and NLO efficiency of compound III arise from the stereochemically active lone pairs in the SeO 3 groups. By optimizing SHG intensity, short-wavelength UV transparency, and birefringence simultaneously, compound III addresses the key challenge of designing high-performance short-wavelength UV NLO materials. This work not only validates the stepwise regulation strategy but also provides a design framework for achieving balanced NLO performance, paving the way for the development of next-generation optical materials.
Wang et al. (Mon,) studied this question.
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