化学
卤化物
带隙
之字形的
光致发光
双折射
分子
光电子学
氢键
金属卤化物
紫外线
卤素
结晶学
磷烯
非线性光学
直接和间接带隙
金属
半导体
非线性光学
氢
宽禁带半导体
荧光
混合材料
光学
作者
Yu-Mei Zhang,Yuqi Xu,Wen-Dong Yao,Qiu-Xia Tang,Liming Kong,Jiajing Wu
标识
DOI:10.1021/acs.inorgchem.6c02344
摘要
Organic–inorganic hybrid metal halides have emerged as highly promising nonlinear optical (NLO) candidates due to their structural diversity and excellent growth habits. Herein, two novel hybrid Sb-based halides, (C 4 H 8 N 5 ) 2 SbBr 5 ( MGSB ) and (C 4 H 8 N 5 ) 2 SbCl 5 ·H 2 O ( MGSC ), were successfully synthesized by halogen substitution and hydrogen bond engineering. MGSB crystallizes in the centrosymmetric (CS) space group P 1̅, whereas MGSC adopts the noncentrosymmetric (NCS) space group Pca 2 1 . The NCS structure of MGSC originates from synergistic effects among asymmetric hydrogen bonding interactions, highly distorted inorganic polyhedra, and the ordered zigzag arrangements of organic molecules in the lattice. MGSC shows a promising second-harmonic generation (SHG) response (1.8 × KDP), a wide bandgap (3.78 eV), and appropriate birefringence (0.16@546 nm), making it a competitive NLO candidate. Moreover, MGSC exhibits bright blue fluorescence under ultraviolet light, indicating that MGSC achieves an unprecedented quadruple enhancement in optical properties relative to MGSB . This work provides an effective strategy for developing multioptical-functional hybrid metal halides.
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