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Published online: 31 January 2012 Structural Designs and Property Characterizations for Second-Harmonic Generation Materials

机译:在线发布:2012年1月31日,二次谐波产生材料的结构设计和特性表征

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摘要

Second-harmonic generation (SHG) materials only exist in solids that have no inversion center space groups, and they are constructed by the building blocks or chromophores of noncentrosymmetricity (NCS). In this chapter, we employed one or multiple chromophores that result from the coordination structure distortions of a d° cation, polar displacement of d~(10) cation center, a stereochemically active lone pair (SCALP) of cations, and asymmetrical derealization π-charge systems, as building blocks to obtain some new compounds with NCS space group. The single-crystal structures were characterized, and physical properties, in particular SHG responses, were measured for these compounds. The electronic structures and density of states were calculated by DFT method, and the SHG properties are simulated to gain an insight into the relations between structure and NLO properties for the materials. The electronic origination of large SHG responses was assigned in terms of the calculated results.
机译:次谐波生成(SHG)材料仅存在于没有反转中心空间组的固体中,并且它们是由非中心对称(NCS)的构造块或生色团构造的。在本章中,我们使用了一个或多个发色团,这些发色团是由ad +阳离子的配位结构畸变,d〜(10)阳离子中心的极性位移,阳离子的立体化学活性孤对(SCALP)和不对称的失配π电荷引起的系统,作为获得NCS空间群的一些新化合物的基础。表征了单晶结构,并测量了这些化合物的物理性质,特别是SHG响应。通过DFT方法计算电子结构和态密度,并模拟SHG特性,以深入了解材料的结构和NLO特性之间的关系。根据计算结果分配了较大的SHG响应的电子来源。

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