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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Quantum mechanical and spectroscopic (FT-IR, FT-Raman) study, NBO analysis, HOMO-LUMO, first order hyperpolarizability and molecular docking study of methyl[(3R)-3-(2-methylphenoxy)-3-phenylpropyl]amine by density functional method
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Quantum mechanical and spectroscopic (FT-IR, FT-Raman) study, NBO analysis, HOMO-LUMO, first order hyperpolarizability and molecular docking study of methyl[(3R)-3-(2-methylphenoxy)-3-phenylpropyl]amine by density functional method

机译:量子机械和光谱(FT-IR,FT-RAMAN)研究,NBO分析,HOMO-LUMO,甲基甲基的一级超极化和分子对接研究[(3R)-3-(2-甲基苯氧基)-3-苯基丙基]胺 密度函数方法

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AbstractQuantum chemical techniques such as density functional theory (DFT) have become a powerful tool in the investigation of the molecular structure and vibrational spectrum and are finding increasing use in application related to biological systems. The Fourier transform infrared (FT-IR) and Fourier transform Raman (FT-Raman) techniques are employed to characterize the title compound. The vibrational frequencies were obtained by DFT/B3LYP calculations with 6-31G(d,p) and 6-311++G(d,p) as basis sets. The geometry of the title compound was optimized. The vibrational assignments and the calculation of Potential Energy Distribution (PED) were carried out using the Vibrational Energy Distribution Analysis (VEDA) software. Molecular electrostatic potential was calculated for the title compound to predict the reactive sites for electrophilic and nucleophilic attack. In addition, the first-order hyperpolarizability, HOMO and LUMO energies, Fukui function and NBO were computed. The thermodynamic properties of the title compound were calculated at different temperatures, revealing the correlations between heat capacity (C), entropy (S) and enthalpy changes (H) with temperatures. Molecular docking studies were also conducted as part of this study. The paper further explains the experimental results which are in line with the theoretical calculations and provide optimistic evidence through molecular docking that the title compound can act as a good antidepressant. It also provides sufficient justification for the title compound to be selected as a good candidate for further studies related to NLO properties.展开▼
机译:<![cdata [ 抽象 量子化学技术,如密度泛函理论(DFT)已成为调查分子结构的强大工具和振动频谱并在与生物系统相关的应用中寻找越来越多的使用。使用傅里叶变换红外(FT-IR)和傅立叶变换拉曼(FT-拉曼)技术来表征标题化合物。通过DFT / B3LYP计算获得振动频率,其中6-31g(d,p)和6-311 ++ g(d,p)作为基集。优化标题化合物的几何形状。使用振动能量分配分析(VEDA)软件进行振动分配和潜在能量分布(PED)的计算。计算标题化合物的分子静电电位,以预测电子亲电和亲核攻击的反应性位点。此外,计算了一阶超极化性,同性恋和Lumo能量,福禄功能和NBO。在不同温度下计算标题化合物的热力学性质,揭示热容量(C),熵(S)和焓变(H)之间的相关性。作为本研究的一部分,也进行了分子对接研究。本文进一步解释了符合理论计算的实验结果,通过分子对接提供乐观证据,即标题化合物可以作为良好的抗抑郁药。它还为待选择的标题化合物提供足够的理由作为与NLO性质相关的进一步研究的良好候选物。

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