Lv Meng-Han, Li Shu-Fang, Ren Meng-Meng, Wang Jia-Xin, Tang Ru-Ling, Chen Jin, Huang Hongbo, Zhang Bingbing, Yan Dong
Key Laboratory of Functional Molecular Solids, Ministry of Education, College of Chemistry and Materials Science, Anhui Normal University, Wuhu, Anhui 241002, P. R. China.
State Key Laboratory of Structural Chemistry, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences, Fuzhou, Fujian 350002, P. R. China.
Inorg Chem. 2024 Feb 26;63(8):3948-3954. doi: 10.1021/acs.inorgchem.3c04344. Epub 2024 Feb 13.
The key to searching novel nonlinear optical (NLO) crystals was effectively combining the NLO-active units to obtain a noncentrosymmetric structure. Nevertheless, the present predicament lies in the growing challenge of discovering novel crystals within conventional inorganic frameworks that surpass the properties of the current NLO materials. In view of this, researchers expanded their research focus to the organic-inorganic hybridization system; it is foreseeable to concentrate the advantages from several kinds of NLO-active units to acquire novel NLO crystals with superior properties. We herein report an organic-inorganic hybrid molybdate crystal, namely, [C(NH)]MoO (GMO). It was successfully obtained via combining inorganic NLO-active MoO octahedra and organic π-conjugated [C(NH)] groups. GMO demonstrates a moderate second-harmonic-generation response, specifically measuring about 1.3 times the value of KDP. Additionally, it exhibits a significant birefringence value of 0.203 at the wavelength of 550 nm and possesses a wide band gap of 3.31 eV. Theoretical calculations suggest that the optical properties of the GMO are primarily influenced by the synergy effect of [C(NH)] groups between MoO octahedra.
寻找新型非线性光学(NLO)晶体的关键在于有效地结合NLO活性单元以获得非中心对称结构。然而,目前的困境在于,在传统无机框架内发现性能超过现有NLO材料的新型晶体面临着越来越大的挑战。鉴于此,研究人员将研究重点扩展到有机-无机杂化体系;可以预见,集中多种NLO活性单元的优势能够获得具有优异性能的新型NLO晶体。我们在此报告一种有机-无机杂化钼酸盐晶体,即[C(NH)]MoO(GMO)。它是通过将无机NLO活性MoO八面体与有机π共轭[C(NH)]基团结合成功获得的。GMO表现出适度的二次谐波产生响应,具体测量值约为KDP的1.3倍。此外,它在550 nm波长处具有0.203的显著双折射值,并拥有3.31 eV的宽带隙。理论计算表明,GMO的光学性质主要受MoO八面体之间[C(NH)]基团的协同效应影响。