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TD-DFT Calculation on UV-Vis Spectra of the Complex 8-((Trimethoxysilyl)methylthio)quinoline⋅ZnCl2

机译:TD-DFT计算8-((三甲氧基甲硅烷基)甲硫基)喹啉·ZnCl 2 的紫外-可见光谱

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摘要

The electronic structure and absorption spectra properties of the complex 8-((trimethoxysilyl)methylthio)quinoline⋅ZnCl2 in the gas phase and in acetonitrile (MeCN) have been investigated by means of DFT/TD-DFT calculations. Calculation results indicate that the broad and weak experimentally observed absorption bands of the complex in MeCN at 335.6 nm originates from spin-forbidden singlet-triplet transitions, but the other experimentally observed absorption bands at 318.5 nm, 310.6 nm and 237.5 nm arise from spin-allowed singlet-singlet transitions. Inclusion of MeCN as solvent leads to dramatic changes in the electronic structures and energy levels of the frontier molecular orbitals of the complex, and hence transition mechanisms of the absorption bands are also changed. For the complex, whether in the gas phase or in MeCN, the metal Zn does not participate in the transitions involved, in the gas phase the calculated lowest-energy absorption band of the complex comes from π→π ∗ mixed with n→π ∗ transitions with LLCT (ligand-to-ligand charge transfer) character, while in MeCN, the calculated lowest-energy absorption band is of LLCT/ILCT (intra-ligand charge transfer) character.
机译:通过DFT / TD-DFT研究了8-((三甲氧基甲硅烷基)甲硫基)喹啉·ZnCl 2 在气相和乙腈(MeCN)中的电子结构和吸收光谱性质。计算。计算结果表明,MeCN中该复合物在335.6 nm处宽而弱的吸收谱带均源自自旋禁止的单重态-三重态跃迁,而其他在实验中观察到的318.5 nm,310.6 nm和237.5 nm吸收谱带则来自于自旋-允许单重态-单重态转换。包含MeCN作为溶剂会导致配合物前沿分子轨道的电子结构和能级发生剧烈变化,因此吸收带的跃迁机理也发生了变化。对于络合物,无论是在气相中还是在MeCN中,金属Zn均不参与所涉及的跃迁,在气相中,所计算出的络合物的最低能量吸收带来自π→π ∗ 与n→π ∗ 过渡混合,具有LLCT(配体到配体的电荷转移)特性,而在MeCN中,计算出的最低能量吸收带为LLCT / ILCT(配体内的电荷转移) )字符。

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