Dong Xuehua, Huang Hongbo, Huang Ling, Zhou Yuqiao, Zhang Bingbing, Zeng Hongmei, Lin Zhien, Zou Guohong
College of Chemistry, Sichuan University, Chengdu, 610065, P. R. China.
College of Chemistry and Materials Science, Sichuan Normal University, Chengdu, 610066, P. R. China.
Angew Chem Int Ed Engl. 2024 Mar 11;63(11):e202318976. doi: 10.1002/anie.202318976. Epub 2024 Feb 5.
Natural minerals, with their adaptable framework structures exemplified by perovskite and lyonsite, have sparked substantial interest as potential templates for the design of advanced functional solid-state materials. Nonetheless, the quest for new materials with desired properties remains a substantial challenge, primarily due to the scarcity of effective and practical synthetic approaches. In this study, we have harnessed a synergistic approach that seamlessly integrates first-principles high-throughput screening and crystal engineering to reinvigorate the often-overlooked fresnoite mineral, Ba TiOSi O . This innovative strategy has culminated in the successful synthesis of two superior inorganic UV nonlinear optical materials, namely Rb TeOP O and Rb SbFP O . Notably, Rb SbFP O demonstrates a comprehensive enhancement in nonlinear optical performance, featuring a shortened UV absorption edge (260 nm) and a more robust second-harmonic generation response (5.1×KDP). Particularly striking is its significantly increased birefringence (0.15@546 nm), which is approximately 30 times higher than the prototype Ba TiOSi O (0.005@546 nm). Our research has not only revitalized the potential of the fresnoite mineral for the development of new high-performance UV nonlinear optical materials but has also provided a clearly defined roadmap for the efficient exploration of novel structure-driven functional materials with targeted properties.
以钙钛矿和里昂石为代表的具有适应性框架结构的天然矿物,作为先进功能固态材料设计的潜在模板引发了广泛关注。然而,寻找具有所需性能的新材料仍然是一项重大挑战,主要原因是缺乏有效且实用的合成方法。在本研究中,我们采用了一种协同方法,将第一性原理高通量筛选与晶体工程无缝结合,以重振常被忽视的钡钛硅石矿物BaTiOSiO₄。这一创新策略最终成功合成了两种优异的无机紫外非线性光学材料,即Rb₂TeOPO₄和Rb₂SbFPO₄。值得注意的是,Rb₂SbFPO₄在非线性光学性能方面有全面提升,具有缩短的紫外吸收边缘(260 nm)和更强的二次谐波产生响应(5.1×KDP)。特别显著的是其双折射显著增加(0.15@546 nm),约为原型钡钛硅石(0.005@546 nm)的30倍。我们的研究不仅重振了钡钛硅石矿物在新型高性能紫外非线性光学材料开发方面的潜力,还为高效探索具有目标性能的新型结构驱动功能材料提供了明确的路线图。