Liu Haonan, Wu Hongping, Hu Zhanggui, Wang Jiyang, Wu Yicheng, Yu Hongwei
State Key Laboratory of Crystal Materials, Tianjin Key Laboratory of Functional Crystal Materials, Institute of Functional Crystals, Tianjin University of Technology, Tianjin 300384, China.
J Am Chem Soc. 2025 Sep 10;147(36):33023-33030. doi: 10.1021/jacs.5c10583. Epub 2025 Aug 26.
Rational structural design of inorganic materials remains a significant challenge in materials science, particularly for deep-ultraviolet (DUV) nonlinear optical (NLO) crystals. Herein, a new DUV-transparent NLO borate, CsSrBO (CSBO), has been successfully predicted and synthesized by the cation regulation from CsKY(BO) (CKYBO). The structural stability of CSBO was confirmed by first-principles phonon vibration calculations, and it was eventually synthesized via a high-temperature solid-state reaction. The substitution of K/Y cations with Sr cations eliminates the disorder and significantly reduces the thermal expansion anisotropy (CKYBO: 9.32, CSBO: 1.95), which effectively protects the crystals from cracking during crystal growth. Furthermore, CSBO successfully achieved the ordered design of BO functional groups, and this structural feature enables it to display well-balanced functional performance, including a strong second-harmonic generation response (5.0 × KHPO), a short UV absorption edge (<190 nm), and moderate birefringence (0.075@1064 nm). All of these results demonstrate that CSBO is a promising DUV NLO material, and this study establishes an effective strategy for developing high-performance NLO crystals through synergistic computational-experimental approaches.
无机材料的合理结构设计在材料科学中仍然是一项重大挑战,尤其是对于深紫外(DUV)非线性光学(NLO)晶体而言。在此,通过对CsKY(BO)(CKYBO)进行阳离子调控,成功预测并合成了一种新型的DUV透明NLO硼酸盐CsSrBO(CSBO)。通过第一性原理声子振动计算证实了CSBO的结构稳定性,并最终通过高温固态反应合成了该晶体。用Sr阳离子取代K/Y阳离子消除了无序性,并显著降低了热膨胀各向异性(CKYBO:9.32,CSBO:1.95),这有效地保护了晶体在生长过程中不发生开裂。此外,CSBO成功实现了BO官能团的有序设计,这一结构特征使其能够展现出平衡良好的功能性能,包括强烈的二次谐波产生响应(5.0×KHPO)、短的紫外吸收边(<190 nm)和适中的双折射(0.075@1064 nm)。所有这些结果表明CSBO是一种有前景的DUV NLO材料,并且本研究通过协同计算-实验方法建立了一种开发高性能NLO晶体的有效策略。