Liu Xiaomeng, Kang Lei, Lin Zheshuai
Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing 100190, China.
University of Chinese Academy of Sciences, Beijing 100190, China.
Inorg Chem. 2021 Mar 15;60(6):3834-3842. doi: 10.1021/acs.inorgchem.0c03596. Epub 2021 Feb 23.
Combining the advantages of organic and inorganic motifs, organic-inorganic hybrid materials can exhibit excellent nonlinear optical (NLO) performance. In this article, through systematic first-principles modeling and simulations, we investigated the NLO performance of an organic planar conjugated guanidinium cation [C(NH), guanidinium (GU)] and its hybrid materials with various inorganic anionic groups. It is demonstrated that GU-based hybrid materials are excellent candidates for ultraviolet (UV) NLO conversion, especially for the important 266 nm laser output in the solar-blind region, because of their wide UV transparency, strong second harmonic generation (SHG) effect, and large optical birefringence. Moreover, the UV NLO performance can be regulated by the hybrid strength and/or hybrid pattern between the GU cations and different kinds of inorganic anionic groups, which would help to explore new UV NLO materials in the hybrid material system.
有机-无机杂化材料结合了有机和无机结构单元的优点,能够展现出优异的非线性光学(NLO)性能。在本文中,通过系统的第一性原理建模和模拟,我们研究了有机平面共轭胍阳离子[C(NH),胍(GU)]及其与各种无机阴离子基团形成的杂化材料的NLO性能。结果表明,基于GU的杂化材料是紫外(UV)NLO转换的优秀候选材料,特别是对于日盲区域重要的266nm激光输出而言,这是由于它们具有宽的紫外透明度、强的二次谐波产生(SHG)效应和大的光学双折射。此外,GU阳离子与不同种类无机阴离子基团之间的杂化强度和/或杂化模式可以调节UV NLO性能,这将有助于在杂化材料体系中探索新型UV NLO材料。