Crystal Structure and DFT Computations of a Solid-State Solution of Mixed Mononuclear Cu(II)/Co(II) Complex

Ramadan Gamodi Abuhmaiera, Fathia Ali Treish, Mohamed Nasir EL-Kaheli, Yazeed Musa Benshaban, Ramadan Mohamed Elmehdawi, Salem El-tuhami Ashoor
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Abstract

A novel mixed molecular Cu (II) and Co (II) complexes [Cu L2]0.82 and [CoL2]0.18 (1) where HL = (4-salicylaldaimine antipyrine) derived from 4-aminoantipyrine and 2-hydroxybenzaldehyde, was isolated as a green solid and characterized by Fourier Transform Infrared Spectroscopy (FTIR), Ultra-Violet Visible spectroscopy (UV-Vis) and Single-crystal x-ray diffraction. Compound 1 is a solid-state solution that contains a statistical mixture of two different molecular complexes: 82% of a 17-electron Cu (II) complex and 18% of a 15-electron Co (II) complex. By looking at the structure, it seems that the two metal ions occupy the same metal site, which is not true; at least a small distance between them exists, verified using the Density functional theory (DFT). A divalent metal cation binds four coordination sites in each molecular complex from two corresponding bidentate Schiff base ligands. Each metal atom is coordinated with two nitrogen and two oxygen atoms of the Schiff base ligand in a geometry much closer to pseudo-tetrahedral than planar. DFT calculations were used to validate the trends observed in bond lengths and angles in this structure. By using the DFT methods, it is seen that there are no significant differences in the experimental values obtained by single-crystal X-ray diffraction. It should be noted that the experimental results belong to the solid phase, while the theoretical calculations belong to the gas phase.

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Cu(II)/Co(II)混合单核配合物固溶体的晶体结构和DFT计算
& lt; p> A< strong>新型混合分子Cu (II)和Co (II)配合物[Cu L<sub>2</sub>]<sub>0.82</sub>和[CoL< sub> 2 & lt; / sub>] & lt; sub> 0.18 & lt; / sub>(1)其中HL =(4-水杨醛胺安替比林),由4-氨基安替比林和2-羟基苯甲醛合成,分离得到绿色固体,并通过傅里叶变换红外光谱(FTIR)、紫外可见光谱(UV-Vis)和单晶x射线衍射进行了表征。化合物1是一种固态溶液,包含两种不同分子络合物的统计混合物:82%的17个电子的Cu (II)络合物和18%的15个电子的Co (II)络合物。从结构上看,似乎两个金属离子占据了同一个金属位置,这是不正确的;它们之间至少存在一个小距离,用密度泛函理论(DFT)验证了这一点。</strong>一个二价金属阳离子结合两个对应的双齿希夫碱配体在每个分子复合物中的四个配位位点。每个金属原子与希夫碱配体的两个氮原子和两个氧原子配位,其几何结构更接近于伪四面体而不是平面。DFT计算用于验证在该结构中观察到的键长和角度的趋势。通过DFT方法可以看出,单晶x射线衍射得到的实验值没有显著差异。需要注意的是,实验结果属于固相,而理论计算属于气相。<
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