Molecular docking, vibrational, structural, electronic and optical studies of {4 – (2, 6) dichlorophenyl amino 2 – methylidene 4 – oxobutanoic acid and 4- (2, 5)} dichlorophenyl amino 2 – methylidene 4 – oxobutanoic acid – A comparative study
首页> 外文期刊>Journal of Molecular Structure >Molecular docking, vibrational, structural, electronic and optical studies of {4 – (2, 6) dichlorophenyl amino 2 – methylidene 4 – oxobutanoic acid and 4- (2, 5)} dichlorophenyl amino 2 – methylidene 4 – oxobutanoic acid – A comparative study
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Molecular docking, vibrational, structural, electronic and optical studies of {4 – (2, 6) dichlorophenyl amino 2 – methylidene 4 – oxobutanoic acid and 4- (2, 5)} dichlorophenyl amino 2 – methylidene 4 – oxobutanoic acid – A comparative study

机译:{4 - (2,6)二氯苯基氨基2-甲基4-氧丁酸和4-(2,5)}二氯苯基氨基2 - 甲基4-氧丁酸甲酸的分子对接,振动,结构,电子和光学研究 - 一种比较 学习

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AbstractSpectroscopic and structural investigations of 4 – [(2, 6 – dichlorophenyl) amino] 2 –methylidene 4 – oxobutanoic acid (6DAMB) and 4-[(2, 5– dichlorophenyl) amino] 2 – methylidene 4 – oxobutanoic acid (5DAMB) are presented by using experimental (FT-IR and FT-Raman) spectra and theoretical (DFT approach) calculations. Seventy-two characteristic vibrational bands of the title compounds were assigned and compared with available experimental data. Stability of the molecule arising from hyper-conjugative interactions and charge delocalization was analyzed using natural bond orbital (NBO) analysis. Several descriptors determined from the energies of frontier molecular orbital (HOMO and LUMO) were applied to describe the reactivity of the title compound. The dipole moment and first hyperpolarizabilities of the studied compounds indicate that the compound is a good candidate of nonlinear optical materials. Theoretical Ultraviolet–Visible spectra of title compounds have been analyzed using the TD-DFT method. The noncovalent interactions like hydrogen bonding and Van der Waals interaction were identified from the molecular geometry and electron localization function. These interactions in molecules have been studied by using reduced density gradient (RDG) and graphed by Multiwfn. Auto-dock studies reveal that butanoic acid derivatives play a vital role in bonding and results draw us to the concluded that both compounds inhibit Placenta growth factor (PIGF-1) and that have good biological activities. This study may also provide further investigation on butanoic acid derivatives for pharmacological importance.
机译:<![CDATA [ 抽象 4 - [(2,6-二氯苯基)氨基] 2-甲基4-氧脱乙酸的光谱和结构研究通过使用实验(FT-IR和FT-Raman)光谱和理论(DFT方法)计算来提出酸(6damb)和4 - [(2,5-二氯苯基)氨基] 2 - 亚甲基4-氧丁烷酸(5ddamb)。将七十二特征振动带分配并与可用的实验数据进行比较。通过天然键(NBO)分析分析来自超缀合相互作用和电荷描移的分子的稳定性。从前位分子轨道(HOMO和LUMO)的能量确定的几个描述符用于描述标题化合物的反应性。研究的化合物的偶极矩和第一个超极化表明该化合物是非线性光学材料的良好候选者。使用TD-DFT方法分析了标题化合物的理论紫外线可见光光谱。从分子几何和电子定位函数中鉴定了氢键和范德华相互作用等非共价相互作用。已经通过使用降低的密度梯度(RDG)来研究分子中的这些相互作用,并通过多壁绘制。自动码头的研究表明,丁酸衍生物在粘合中发挥至关重要的作用,结果将我们的结论吸引了我们的结论,即化合物抑制胎盘生长因子(PIGF-1)并且具有良好的生物活性。本研究还可以进一步研究丁酸丁酸衍生物进行药理重要性。

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