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一种新型紫外非线性光学材料CsZn2B3O7:ZnO4四面体使二次谐波产生效率提高了一倍。

A new UV nonlinear optical material CsZn2B3O7: ZnO4 tetrahedra double the efficiency of second-harmonic generation.

作者信息

Zhao Sangen, Zhang Jia, Zhang Shu-quan, Sun Zhihua, Lin Zheshuai, Wu Yicheng, Hong Maochun, Luo Junhua

机构信息

Key Laboratory of Optoelectronic Materials Chemistry and Physics, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences , Fuzhou, Fujian 350002, China.

出版信息

Inorg Chem. 2014 Mar 3;53(5):2521-7. doi: 10.1021/ic402667m. Epub 2014 Feb 10.

Abstract

A new noncentrosymmetric borate CsZn2B3O7 was synthesized by the solid-state reaction techniques. The crystals were obtained by flux method and are of block shape without layering tendency. Single-crystal X-ray diffraction analysis reveals that the crystal structure is composed of [Zn2BO5]∞ two-dimensional layers that are bridged by B3O6 groups to form a three-dimensional framework with one-dimensional channels occupied by Cs(+) cations along the a and c axes. Thermal analysis indicates that CsZn2B3O7 melts incongruently. UV-visible-near-IR diffuse reflectance spectrum gives a short absorption edge at 218 nm. CsZn2B3O7 is phase-matchable, with a powder second-harmonic generation (SHG) efficiency of 1.5 × KDP (KDP, potassium dihydrogen phosphate) at 1064 nm, based on the Kurtz-Perry method. These results show that CsZn2B3O7 may have prospects as a UV nonlinear optical material. Interestingly, the SHG efficiency of CsZn2B3O7 is about twice that of γ-KBe2B3O7, a structurally analogous alkaline and alkaline earth borate. First-principles calculations combined with atom-cutting analysis reveal that the ZnO4 tetrhedral groups in CsZn2B3O7 account for the SHG enhancement.

摘要

通过固态反应技术合成了一种新型非中心对称硼酸盐CsZn2B3O7。采用助熔剂法获得了该晶体,其呈块状,无分层倾向。单晶X射线衍射分析表明,晶体结构由[Zn2BO5]∞二维层组成,这些二维层由B3O6基团桥连,形成三维骨架,沿a轴和c轴有一维通道被Cs(+)阳离子占据。热分析表明CsZn2B3O7发生不一致熔融。紫外-可见-近红外漫反射光谱在218nm处有一个短吸收边。基于库尔茨-佩里方法,CsZn2B3O7是相位匹配的,在1064nm处粉末二次谐波产生(SHG)效率为1.5×KDP(KDP,磷酸二氢钾)。这些结果表明CsZn2B3O7作为紫外非线性光学材料可能具有应用前景。有趣的是,CsZn2B3O7的SHG效率约为γ-KBe2B3O7(一种结构类似的碱金属和碱土金属硼酸盐)的两倍。第一性原理计算结合原子切割分析表明,CsZn2B3O7中的ZnO4四面体基团是SHG增强的原因。

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