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Dimensionality Engineering of Fluorozirconium Phosphates for Deep-UV-Transparent Crystals with Enhanced Second-Harmonic Generation and Birefringence
- Zhang, Yuexin;
- Song, Yipeng;
- Bai, Zhiyong;
- Yuan, Zhengnan;
- Huang, Weiqi;
- ... Ok, Kang Min;
- 외 5명
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0초록
Phosphate crystals have attracted significant interest as platforms for deep-ultraviolet (deep-UV) optical materials, attributable to their rich structural chemistry and tunable optical properties. However, simultaneously achieving strong second-harmonic generation (SHG) and enhanced birefringence in phosphate systems remains a formidable challenge. Herein, through a dimensionality-engineering strategy, we report five deep-UV transparent fluorozirconium phosphate compounds, including the three-dimensional (3D) ZrPO4F (I), two-dimensional (2D) Zr(H2PO4)(HPO4)F & centerdot;3H2O (II) and (NH4)4Zr4(HPO4)2(PO4)4F4 (III), as well as the one-dimensional (1D) Rb2.9(NH4)3.1Zr4(H2PO4)F21 (IV) and Rb4.2(NH4)3.8Zr4(PO4)2F18 (V). These compounds exhibit clear dimension-dependent optical properties, with reduced dimensionality leading to enhanced SHG responses and larger birefringence. Notably, the fluorine-rich 1D compounds display the strongest SHG efficiency (up to 2.1 & times; KDP) and the largest birefringence (0.053 @ 550 nm) within the series. Structure-property analyses reveal that decreasing the structural dimensionality promotes increased local distortion of Zr-centered polyhedra and more uniform dipole alignment, thereby amplifying both SHG and birefringence. This work establishes dimensionality engineering of fluorozirconium phosphates as an effective strategy for fine-tuning key optical properties while maintaining deep-UV transparency.
키워드
- 제목
- Dimensionality Engineering of Fluorozirconium Phosphates for Deep-UV-Transparent Crystals with Enhanced Second-Harmonic Generation and Birefringence
- 저자
- Zhang, Yuexin; Song, Yipeng; Bai, Zhiyong; Yuan, Zhengnan; Huang, Weiqi; Qi, Ji; Zhou, Xinwei; Zhao, Sangen; Chen, Ling; Ok, Kang Min; Luo, Junhua
- 발행일
- 2026-04
- 유형
- Article
- 권
- 148
- 호
- 13
- 페이지
- 14284 ~ 14295