首页> 外文期刊>Turkish journal of chemistry >A combined first principles TDDFT and experimental study on the UV-Vis spectra properties of M(p-nitrophenyl azo resorcinol)_3 complexes (M: Fe, Cr)
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A combined first principles TDDFT and experimental study on the UV-Vis spectra properties of M(p-nitrophenyl azo resorcinol)_3 complexes (M: Fe, Cr)

机译:结合第一原理TDDFT和M(对硝基苯基偶氮间苯二酚)_3(M:Fe,Cr)配合物的UV-Vis光谱特性的实验研究

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UV-Vis absorption data of p-nitrophenyl azo resorcinol (Magneson I) and its 2 Fe(III) and Cr(III) complexes were investigated both experimentally and theoretically. The geometries were optimized at BP86/TZVP level. The most stable spin states were computed as doublet and quartet for Fe(magneson)_3 and Cr(magneson)_3 complexes, respectively. Time-dependent density functional theory (TDDFT) was employed to explore the absorption spectra properties, whereas the solvent effects were taken into account using the polarizable continuum model (PCM). The M06, B3LYP, and PBE0 hybrid functionals together with TZVP/LANL2TZ basis sets were used for comparing the results with experimental data. The theoretical analysis of electronic structure and molecular orbitals demonstrated that the low-lying absorption bands in the UV-Vis spectra are mainly pi o d ligand-to-metal charge transfer (LMCT) transition and pi o pi ligand-to-ligand charge transfer (LLCT) transition for Fe(magneson)_3, and, in addition to that of LMCT and LLCT, d o pi metal-to-ligand charge transfer (MLCT) transition for Cr(magneson)_3 complexes. The good agreement between the experimental and TDDFT calculation, especially M06 and B3LYP absorption spectra of the metal Magneson I complexes, allowed us to provide a detailed estimation of the main spectral features of ferric and chromic complexes.
机译:对硝基苯偶氮间苯二酚(Magneson I)及其2 Fe(III)和Cr(III)配合物的紫外-可见吸收数据进行了实验和理论研究。在BP86 / TZVP级别优化了几何形状。 Fe(magneson)_3和Cr(magneson)_3配合物的最稳定自旋态分别计算为二重峰和四重峰。随时间变化的密度泛函理论(TDDFT)用于研究吸收光谱的特性,而使用可极化连续体模型(PCM)考虑了溶剂效应。 M06,B3LYP和PBE0杂合功能以及TZVP / LANL2TZ基集用于将结果与实验数据进行比较。电子结构和分子轨道的理论分析表明,UV-Vis光谱中的低吸收带主要是 pi 到d配体到金属的电荷转移(LMCT)跃迁和 pi 到 pi配体- Fe(magneson)_3的配体电荷转移(LLCT)过渡,以及LMCT和LLCT的过渡,Cr(magneson)_3配合物的d pi金属-配体电荷转移(MLCT)过渡。实验和TDDFT计算之间的良好一致性,特别是金属Magneson I配合物的M06和B3LYP吸收光谱,使我们能够提供铁和铬配合物主要光谱特征的详细估计。

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