Sr<sub>6</sub>Cd<sub>2</sub>Sb<sub>6</sub>O<sub>7</sub>S<sub>10</sub>: Strong SHG Response Activated by Highly Polarizable Sb/O/S Groups

Ruiqi Wang(Peking University), Fei Liang(Chinese Academy of Sciences), Fakun Wang(Huazhong University of Science and Technology), Yangwu Guo(Chinese Academy of Sciences), Xian Zhang(China Academy of Space Technology), Yi Xiao(Peking University), Kejun Bu(Chinese Academy of Sciences), Zheshuai Lin(Chinese Academy of Sciences), Jiyong Yao(Chinese Academy of Sciences), Tianyou Zhai(Huazhong University of Science and Technology), Fuqiang Huang(Chinese Academy of Sciences)
Angewandte Chemie International Edition
April 15, 2019
Cited by 116

Abstract

Abstract A new nonlinear optical (NLO) oxysulfide, Sr 6 Cd 2 Sb 6 O 7 S 10 , which contains the functional groups [SbO x S 5− x ] 7− ( x =0, 1) with a 5s 2 electron configuration, is synthesized by a solid‐state reaction. This compound displays a phase‐matchable second harmonic generation (SHG) response four times stronger than AgGaS 2 (AGS) under laser irradiation at 2.09 μm. Single‐crystal‐based optical measurements reveal a SHG intensity that can be tuned by temperature and novel photoluminescence properties. Theoretical analyses demonstrate that tetragonal [SbOS 4 ] 7− and [SbS 5 ] 7− pyramids make the predominant contribution to the enhanced SHG effect. Among those, the [SbOS 4 ] 7− units with mixed anions make a larger contribution. This work proposes that oxysulfide groups with an n s 2 electron configuration can serve as new functional building units in NLO materials and opens a new avenue for the design of other optoelectronic materials.


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