Peiqing Long, Chun-Li Hu, Xitao Liu, Jiang-Gao Mao
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引用次数: 0
Abstract
The growth of bulk nonlinear optical (NLO) crystals that exhibit robust second harmonic generation (SHG) is currently an intriguing and rapidly advancing field for laser and photonic applications. Among the various options available, organic-inorganic hybrid materials offer numerous possibilities due to their distinctive amalgamation of inorganic coordinate frameworks and organic molecules. Herein, we have successfully developed a novel non-centrosymmetric (NCS) organic-inorganic hybrid NLO material, manganese mercury thiocyanate-bis(acetamide), [Mn(CH3CONH2)2][Hg(SCN)4] (MMTA), by synergistically incorporating inorganic polyhedra and organic conjugate molecules. The crystal displays a polar architecture comprising an asymmetric [HgS4] tetrahedron and [MnN4O2] octahedron which are connected by four π-conjugated -S-C≡N- ligands. More intriguingly, inch-size single crystals with dimensions up to 50×50×12 mm3, have been easily grown from aqueous solutions by temperature-lowering method. The optical properties investigation suggests that MMTA is a phase-matching NLO material with a large SHG response approximately 2.5 times that of KH2PO4, demonstrating its potential for NLO applications. Based on a combination of structural analysis and theoretical calculations, it is suggested that the significant SHG response can be attributed to the cooperative interaction between conjugated organic molecules and a highly asymmetric inorganic distorted octahedron. This work introduces an effective approach for the discovery of high-performance quadratic NLO materials, with a particular focus on organic-inorganic hybrid compounds.
体非线性光学(NLO)晶体的生长表现出强大的二次谐波产生(SHG)是目前激光和光子应用的一个有趣和快速发展的领域。在各种可用的选择中,有机-无机杂化材料由于其独特的无机坐标框架和有机分子的融合而提供了许多可能性。在此,我们成功地开发了一种新的非中心对称(NCS)有机-无机杂化NLO材料,硫氰酸锰汞-双(乙酰胺),[Mn(CH3CONH2)2][Hg(SCN)4] (MMTA),通过无机多面体和有机共轭分子的协同作用。该晶体呈现由非对称[HgS4]四面体和[MnN4O2]八面体组成的极性结构,它们由四个π共轭- s -c≡N-配体连接。更有趣的是,通过降低温度的方法,可以很容易地从水溶液中生长出尺寸高达50×50×12 mm3的英寸大小的单晶。光学性质研究表明,MMTA是一种相位匹配的NLO材料,其SHG响应大,约为KH2PO4的2.5倍,显示了其在NLO应用中的潜力。结合结构分析和理论计算,提出了显著的SHG响应可归因于共轭有机分子与高度不对称无机扭曲八面体之间的协同相互作用。这项工作介绍了一种有效的方法来发现高性能的二次NLO材料,特别关注有机-无机杂化化合物。