三硫代氰尿酸Cu(I)配合物[Cu(ttc)3]的合成、表征及理论计算

Q2 Multidisciplinary Universitas Scientiarum Pub Date : 2018-08-27 DOI:10.11144/JAVERIANA.SC23-2.SCAT
Ximena Jaramillo-Fierro, C. Zambrano, F. Fernández, Regino Saenz-Puche, C. Costa, V. Guerrero, Silvia González
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引用次数: 7

摘要

以三硫代氰尿酸(ttc)和高氯酸铜(II)为原料,在DMF溶剂中,采用慢速沉淀法,在室温下成功合成了一种新型的Cu(I)配合物。通过MALDI-TOFMS、UV-Vis和FTIR光谱、DSC-TGA分析和磁化率测定对化合物的分子结构进行了表征。使用Gaussian09和AIMAII程序进行的计算研究证实了所提出的结构,该程序使用6-31G和Alhrich TZV基集的RB3LYP混合DFT泛函。将计算的振动频率值与实验FTIR值进行比较。通过紫外-可见光谱法评估了合成的配合物的光物理性质,并与TDDFT计算的垂直激发进行了比较。理论振动频率和紫外-可见光谱与实验值吻合较好。此外,使用相同的理论近似计算了配合物的前沿分子轨道(HOMO-LUMO)和分子静电势。结果表明,三个配位配体原子与Cu(I)离子相互作用。
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Synthesis, characterization and theoretical calculations of Cu(I) complex of trithiocyanuric acid [Cu(ttc)3]
A new Cu(I) complex constructed by reaction of trithiocyanuric acid (ttc) and copper (II) perchlorate hexahydrate has been successfully synthesized by a slow sedimentation method in a DMF solvent at room temperature. The molecular structure of the compound was elucidated by MALDI-TOFMS, UV Vis and FTIR spectroscopy, DSC-TGA analysis and magnetic susceptibility measurement. The proposed structure was corroborated by a computational study carried out with the Gaussian09 and AIMAII programs using the RB3LYP hybrid DFT functional with both 6-31G and Alhrich-TZV basis sets. The calculated vibrational frequencies values were compared with experimental FTIR values. Photophysical properties of the synthesized complex were evaluated by UV-Visible spectroscopy and compared with computed vertical excitation obtained from TDDFT. The theoretical vibrational frequencies and the UV Vis spectra are in good agreement with the experimental values. Additionally, the Frontier Molecular Orbitals (HOMO-LUMO) and the Molecular Electrostatic Potential of the complex was calculated using same theoretical approximation. The results showed the interaction between three coordinatedl igand atoms and the Cu(I) ion.
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来源期刊
Universitas Scientiarum
Universitas Scientiarum Multidisciplinary-Multidisciplinary
CiteScore
1.20
自引率
0.00%
发文量
9
审稿时长
15 weeks
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