化学
镧系元素
四面体
镧
结晶学
偶极子
对称(几何)
对称性破坏
叠加原理
非线性光学
晶体结构
星团(航天器)
水合物
红外线的
无机化学
吸收(声学)
联轴节(管道)
硫酸盐
化学物理
吸收光谱法
紫外线
二次谐波产生
非线性光学
Crystal(编程语言)
多面体
局部对称性
旋转对称性
吸收边
作者
Xiuying Zhang,Yebiao Wu,Qiya Huang,Lehui Liu,Peican Chen,Hongming Liu
标识
DOI:10.1021/acs.inorgchem.6c03417
摘要
Abstract The tetrahedral [SO4] unit is an attractive building block for ultraviolet (UV) nonlinear optical (NLO) materials because its wide energy gap supports deep-UV (DUV) transparency. However, its high symmetry often favors centrosymmetric (CS) arrangements that preclude second-order NLO responses. To facilitate the formation of noncentrosymmetric (NCS) lanthanide sulfates, we express a hydration-number-tuned symmetry-breaking strategy here. On the basis of the synthetic route for La2(SO4)3·9H2O, 18-crown-6 was utilized as a coordination regulator to modulate the coordination environment of La3+ cations and the connectivity of structural units. As a result, La2(SO4)3·8H2O, the lanthanum sulfate hydrate with an NCS crystal structure, was synthesized. It crystallizes in space group Pn and exhibits an absorption edge below 200 nm. Moreover, due to the effective superposition of the dipole moments of both the [LaO5(H2O)4] polyhedron and [SO4] tetrahedron in the structure, it presents a moderate second harmonic generation (SHG) response of approximately 0.51 times that of KH2PO4 (KDP). These results demonstrate that hydration-number regulation can be used to modulate the structural symmetry and NLO properties of lanthanide sulfate hydrates and may provide an exercisable design strategy for sulfate-based DUV NLO materials.
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