首页> 外文期刊>Macedonian Journal of Chemistry and Chemical Engineering >Molecular structure, vibrational spectra, NBO, Fukui function, HOMO-LUMO analysis and molecular docking study of 6-[(2-methylphenyl)sulfanyl]-5-propylpyrimidine-2,4(1H,3H)-dione
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Molecular structure, vibrational spectra, NBO, Fukui function, HOMO-LUMO analysis and molecular docking study of 6-[(2-methylphenyl)sulfanyl]-5-propylpyrimidine-2,4(1H,3H)-dione

机译:6-[(2-甲基苯基)硫烷基] -5-丙基嘧啶-2,4(1H,3H)-二酮的分子结构,振动光谱,NBO,Fukui函数,HOMO-LUMO分析和分子对接研究

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Theoretical and experimental FT-IR and FT-Raman vibrational spectral analysis of 6-[(2-methylphenyl)sulfanyl]-5-propylpyrimidine-2,4(1 H ,3 H )-dione have been recorded in the region 4000-400 cm -1 and 4000-100 cm -1 insolid phase. The molecular geometrical parameters, bond length, bond angle and vibrational wave numbers, harmonic vibrational frequency were investigated using the density functional theory B3LYP method with the 6-311++G(d,p) basis set. The stability of the molecule has been investigated using the natural bond orbital (NBO) analysis. The electronic properties such as HOMO-LUMO energies were determined by the time-dependent DFT approach. The thermodynamical properties and the first order hyperpolarizability and molecular electrostatic potential (MEP) of the title compound were also studied. The electron density-based local reactivity descriptors such as the Fukui functions were calculated to explain the chemical selectivity or reactivity site in the molecule . The molecule orbital contributions were investigated using the total density of states (TDOS), the sum of ?? and ?? electron density of states (????DOS). The molecular docking (ligand-protein) simulations have been performed using the SWISSDOCK server. The full fitness (FF) score and hydrogen bonding interaction and binding affinity values revealed that title compound can act as potential inhibitor against HIV-1 protease.
机译:在4000-400区域记录了6-[((2-甲基苯基)硫烷基] -5-丙基嘧啶-2,4(1 H,3 H)-二酮的理论和实验FT-IR和FT-Raman振动光谱分析cm -1和4000-100 cm -1固相。利用密度泛函理论B3LYP方法,以6-311 ++ G(d,p)为基础,研究了分子的几何参数,键长,键角和振动波数,谐波振动频率。已经使用自然键轨道(NBO)分析研究了分子的稳定性。电子特性(例如HOMO-LUMO能量)通过与时间有关的DFT方法确定。还研究了标题化合物的热力学性质以及一阶超极化性和分子静电势(MEP)。计算基于电子密度的局部反应性描述符(例如Fukui函数)以解释分子中的化学选择性或反应性位点。使用总状态密度(TDOS),Δε之和来研究分子的轨道贡献。和??状态的电子密度(DOS)。已经使用SWISSDOCK服务器执行了分子对接(配体-蛋白质)模拟。完全适合度(FF)评分以及氢键相互作用和结合亲和力值表明标题化合物可作为针对HIV-1蛋白酶的潜在抑制剂。

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