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双(2-氯苯甲醛缩氨基硫脲)卤化镉(CdL(2)X(2);X = Br,I)的合成、晶体结构及二阶光学非线性

Synthesis, Crystal Structure, and Second-Order Optical Nonlinearity of Bis(2-chlorobenzaldehyde thiosemicarbazone)cadmium Halides (CdL(2)X(2); X = Br, I).

作者信息

Tian Yp Yu-peng, Duan Cy Chun-ying, Zhao Cy Cun-yuan, You Xz Xiao-zeng, Mak Thomas C. W., Zhang Zy Ze-ying

机构信息

Chemistry Department, The Chinese University of Hong Kong, Hong Kong.

出版信息

Inorg Chem. 1997 Mar 12;36(6):1247-1252. doi: 10.1021/ic9603870.

Abstract

The new Schiff base ligand 2-chlorobenzaldehyde thiosemicarbazone (L, 1) has been synthesized and characterized by spectral techniques and single-crystal X-ray analysis. Crystals of 1 are monoclinic, space group P2(1)/n with a = 12.964(4) Å, b = 5.131(5) Å, c = 4.970(1) Å, beta = 94.32(2) degrees, and Z = 4. The thiosemicarbazone moiety adopts a configuration with N(1) cis to N(3) and places the E configuration about both the bonds C(1)-N(2) and C(2)-N(3). The monodentate behavior of the neutral ligand (L) has been investigated in two cadmium halides CdL(2) Br(2) (2) and CdL(2)I(2) (3). Compound 2 crystallizes in space group Cc witha = 8.175(1) Å, b = 14.176(1) Å, c = 21.073(1) Å, beta = 94.02(1) degrees, and Z = 4. Compound 3 crystallizes in space group P&onemacr; with a = 10.9577(1) Å, b = 16.174(1) Å, c = 7.878(1) Å, alpha = 100.50(1) degrees, beta = 109.39(1) degrees, gamma = 83.67(1) degrees, and Z = 2. The coordination geometry about the cadmium(II) atom in compound 2 conforms to a tetrahedral configuration with two sulfur atoms from two unequivalent neutral ligands and two bromide atoms. Whereas the coordination geometry about the cadmium(II) atom in compound 3 is (4 + 1) distorted trigonal bipyramidal with two iodide atoms and one sulfur atom in the equatorial plane, the other thiosemicarbazone sulfur and the iodide atom I(1a) of an adjacent moiety occupy the axial positions. Compound 2 exhibits powder SHG efficiencies ca. 20 times that of urea, whereas compound 3 does not exhibit any SHG efficiency. Theory and experiment suggested that intermolecular contact is the main factor controlling the SHG efficiencies of compounds.

摘要

新型席夫碱配体2-氯苯甲醛缩氨基硫脲(L,1)已通过光谱技术和单晶X射线分析进行了合成与表征。1的晶体为单斜晶系,空间群P2(1)/n,a = 12.964(4) Å,b = 5.131(5) Å,c = 4.970(1) Å,β = 94.32(2)°,Z = 4。缩氨基硫脲部分采取N(1)与N(3)顺式的构型,并使C(1)-N(2)和C(2)-N(3)键均为E构型。已在两种卤化镉CdL(2) Br(2)(2)和CdL(2)I(2)(3)中研究了中性配体(L)的单齿行为。化合物2结晶于空间群Cc,a = 8.175(1) Å,b = 14.176(1) Å,c = 21.073(1) Å,β = 94.02(1)°,Z = 4。化合物3结晶于空间群P&onemacr;,a = 10.9577(1) Å,b = 16.174(1) Å,c = 7.878(1) Å,α = 100.50(1)°,β = 109.39(1)°,γ = 83.67(1)°,Z = 2。化合物2中镉(II)原子周围的配位几何构型符合四面体构型,有来自两个不等价中性配体的两个硫原子和两个溴原子。而化合物3中镉(II)原子周围的配位几何构型为(4 + 1)扭曲三角双锥,赤道平面上有两个碘原子和一个硫原子,另一个缩氨基硫脲硫原子和相邻部分的碘原子I(1a)占据轴向位置。化合物2的粉末SHG效率约为尿素的20倍,而化合物3未表现出任何SHG效率。理论和实验表明,分子间接触是控制化合物SHG效率的主要因素。

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