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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Structural Modulation of Anionic Group Architectures by Cations to Optimize SHG Effects: A Facile Route to New NLO Materials in the ATCO(3)F (A = K, Rh; T = Zn, Cd) Series
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Structural Modulation of Anionic Group Architectures by Cations to Optimize SHG Effects: A Facile Route to New NLO Materials in the ATCO(3)F (A = K, Rh; T = Zn, Cd) Series

机译:通过阳离子优化SHG效应的阴离子基团体系结构的结构调制:ATCO(3)F(A = K,Rh; T = Zn,Cd)系列中新型NLO材料的简便途径

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摘要

A new series of alkali-transition metal fluoride carbonates (KCdCO3F, RbCdCO3F, KZnCO3F, and RbZnCO3F) have been synthesized under subcritical hydrothermal conditions. All crystals are isostructural with the acentric space group P (6) over bar c2 (188). They were structurally characterized by X-ray single crystal diffraction and exhibited the stacking of alternating [AF](infinity)(A = K, Pb) and [TCO3](infinity)(T = Zn, Cd) layers connecting adjacent layers by infinite T-F-T (T = Zn, Cd) chains parallel to c-axis. We found that all [TCO3](T = Zn, Cd) building units aligned perfectly parallel in any given layer, but the rotation from one layer to the next resulted in the nonparallel arrangement of [CO3] groups between two adjacent [TCO3](infinity) (T = Zn, Cd) layers. In this work, the relative rotation of [CO3] groups between two successive layers was successfully controlled by introducing cations of different sizes into the structures, which led to different relative rotation angles of [CO3] groups, yielding varying second harmonic generation (SHG) effects for each fluoride carbonates. The SHG measurement indicates these compounds are all phase-matchable materials in both the visible and the UV region, and the experimental SHG responses are approximately 4.58, 2.84, 1.76, and 0.83 times that of KH2PO4 (KDP) for KCdCO3F, RbCdCO3F, KZnCO3F, and RbZnCO3F, respectively. All new compounds exhibit wide transparent regions ranging from the UV to the near IR, which suggest that they are promising UV NLO materials. In addition, the differences of the structures and NLO properties of A(1+)M(2+)CO(3)F-type crystals were summarized, and their structural design ideas and methods with respect to the structural modulation of anionic group architectures by cations to optimize SHG effects were detailed.
机译:在亚临界水热条件下,合成了一系列新的碱过渡金属碳酸盐碳酸盐(KCdCO3F,RbCdCO3F,KZnCO3F和RbZnCO3F)。所有晶体都是同构的,在棒c2(188)上的无心空间群P(6)。它们通过X射线单晶衍射进行结构表征,并表现出交替排列的[AF](无穷大)(A = K,Pb)和[TCO3](无穷大)(T = Zn,Cd)层的堆叠,这些层通过无穷大连接相邻层TFT(T = Zn,Cd)链平行于c轴。我们发现,所有[TCO3](T = Zn,Cd)建筑单元在任何给定层中均完全平行排列,但是从一层到下一层的旋转导致[CO3]基团在两个相邻[TCO3](无穷大)(T = Zn,Cd)层。在这项工作中,通过将不同大小的阳离子引入结构中,成功地控制了两个连续层之间的[CO3]基团的相对旋转,从而导致[CO3]基团的相对旋转角度不同,从而产生了变化的二次谐波(SHG)每种氟化碳的效果。 SHG测量表明,这些化合物在可见光区域和UV区域均为相匹配材料,并且实验性SHG响应约为KCdCO3F,RbCdCO3F,KZnCO3F,KH2PO4(KDP)的4.58、2.84、1.76和0.83倍,和RbZnCO3F分别。所有新化合物均显示出从UV到近IR的宽透明区域,这表明它们是有前途的UV NLO材料。此外,总结了A(1+)M(2+)CO(3)F型晶体的结构和NLO性质的差异,并就阴离子基团结构的结构调制提出了它​​们的结构设计思想和方法。通过阳离子优化SHG效果进行了详细介绍。

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