TD-DFT Calculations, Electronic Structure, NBO , NLO Analysis, Biological Activity, and Electronic Absorption Spectra of Some Novel Schiff base Derivatives

S. A. Halim, E. A. Gomaa, Shymaa E. Rashedb
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Abstract

The electronic structure and spectra of schiff base derivatives compounds are investigated using TD-DFT/B3LYB/6-311G (d, p) level of theory. The results of calculations show that all the studied compounds 1–4 are non-planar, as indicated from the dihedral angles. The electronic absorption spectra of the studied compounds are recorded in the UV-VIS region, in both ethanol (as polar solvent) and dioxane (as non-polar solvent) . Solvent dependence of the band maxima (λmax) and intensities of the observed spectra are explained in terms of blue and red shifts. Electronic configurations contributing to each excited state are identified and the relevant MOs are characterized. The theoretical spectra computed at CAM-B3LYP/6-311G (d, p) in gas phase, ethanol and dioxane nicely reproduce the observed spectra. The natural bond orbital (NBO) analysis were discussed in terms of the extent of delocalization, intermolecular charge transfer and second order perturbation interactions between donor and acceptor MOs. The calculated EHOMO and ELUMO energies of the studied compounds can be used to explain the extent of charge transfer in the molecule and to calculate the global properties; the chemical hardness (η), global softness (S), electrophilicity (ω), and electronegativity (χ). The calculated nonlinear optical parameters (NLO); polarizibilty (α), anisotropy of the polarizibility (Δα) and first order hyperpolarizibility (β) of the studied compounds have been calculated at the same level of theory and compared with the proto type Para-Nitro-Aniline (PNA), show promising optical properties. 3D-plots of the molecular electrostatic potential (MEP) for some of the studied compounds are investigated and analyzed showing the distribution of electronic density of orbital's describing the electrophilic and nucleophilic sites of the selected molecules. The biological activity of the studied compounds was tested against gram positive, gram negative and Fungi. A correlation between energetic, global properties and biological activity were investigated and discussed.
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一些新型希夫碱衍生物的TD-DFT计算、电子结构、NBO、NLO分析、生物活性和电子吸收光谱
采用TD-DFT/B3LYB/6-311G (d, p)理论研究了席夫碱衍生物的电子结构和光谱。计算结果表明,所研究的化合物1 ~ 4都是非平面的,从二面角可以看出。在乙醇(极性溶剂)和二氧六环(非极性溶剂)中记录了所研究化合物的紫外-可见区电子吸收光谱。波段最大值(λmax)和观测光谱强度的溶剂依赖性用蓝移和红移来解释。确定了导致每种激发态的电子构型,并对相关的MOs进行了表征。在CAM-B3LYP/6-311G (d, p)气相、乙醇和二氧六环下计算的理论光谱很好地再现了观测到的光谱。讨论了天然键轨道(NBO)分析的离域程度、分子间电荷转移和供、受体MOs之间的二阶微扰相互作用。所计算的EHOMO和ELUMO能可以用来解释分子中电荷转移的程度和计算整体性质;化学硬度(η)、整体柔软度(S)、亲电性(ω)和电负性(χ)。计算的非线性光学参数(NLO);在相同的理论水平上计算了所研究化合物的极化率(α)、极化率的各向异性(Δα)和一阶超极化率(β),并与原型对硝基苯胺(PNA)进行了比较,显示出良好的光学性质。对所研究的一些化合物的分子静电势(MEP)的三维图进行了研究和分析,显示了描述所选分子亲电和亲核位点的轨道电子密度的分布。研究了化合物对革兰氏阳性菌、革兰氏阴性菌和真菌的生物活性。研究并讨论了能量、全局性质与生物活性之间的关系。
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