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From centrosymmetric (C4H8N5)(SbF4) to polar (C4H7N4O)(SbF4): a new UV nonlinear optical material achieved by
Zhi-Xiang Wang1,2, Chun-Li Hu1, Chuan-Fu Sun3
1State Key Laboratory of Functional Crystals and Devices, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences Fuzhou 350002 P. R. China kongfang@fjirsm.ac.cn.
None:
The design and synthesis of new ultraviolet nonlinear optical (NLO) materials is challenging due to the constraint relationship between their NLO efficiency and optical bandgap. Using a functional group modulation strategy, the π-conjugated organic cations and the distorted [SbF4]- anions are assembled in both antiparallel and parallel arrangement modes, resulting in two new organic-inorganic hybrid fluoroantimonites, namely, centrosymmetric (C4H8N5)(SbF4) and polar (C4H7N4O)(SbF4). The polar (C4H7N4O)(SbF4) demonstrates excellent comprehensive properties, including a strong SHG effect (4.2 × KDP), a wide bandgap (4.40 eV) and a short phase matchable wavelength (263 nm). This SHG intensity is the largest among the organic-inorganic hybrid perfluoroantimonites with an optical bandgap >4.20 eV. The SHG density calculation indicates that the NLO performance of (C4H7N4O)(SbF4) mainly comes from the parallel-arranged organic groups, with their contribution accounting for 89.49%. This work proves that the arrangement of π-conjugated organic ligands can be modulated to a parallel mode by adjusting the number of hydrogen bond donors. Combined with a wide HOMO-LUMO gap, the functional group modulation method is an effective strategy for designing and synthesizing ultraviolet NLO materials.
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