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首页> 外文期刊>Vibrational Spectroscopy: An International Journal devoted to Applications of Infrared and Raman Spectroscopy >The effects of conformation and intermolecular hydrogen bonding on the structural and vibrational spectral data of naproxen molecule
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The effects of conformation and intermolecular hydrogen bonding on the structural and vibrational spectral data of naproxen molecule

机译:构象和分子间氢键对萘芬分子结构和振动谱数据的影响

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The structural and vibrational properties of naproxen, an inhibitor of cyclooxygenase (COX) enzyme, were investigated by molecular modeling and experimental 1R and Raman spectroscopic techniques. Possible conformers of the molecule were searched via a molecular dynamics simulation carried out with MM2 force field. The total energies, equilibrium geometries, force fields, IR and Raman spectral data of the found stable conformers were determined by means of geometry optimization and harmonic frequency calculations carried out using the B3LYP method and Pople-style basis sets of different size. The stability order obtained for the lowest-energy conformers was confirmed by high-accuracy thermochemistry calculations performed with G3MP2B3 composite method. Some electronic structure parameters of naproxen and the anharmonicity characters of its vibrational modes were determined by means of natural population analysis (NPA) and anharmonic frequency calculations at B3LYP/6-31++G(d,p) and B3LYP/6-311 ++G(d,p) levels of theory. A part of these calculations carried out for free naproxen molecule were repeated also for its energetically most favored dimer forms. Two different scaling procedures ((1) "SQM-FF methodology" and (2) "Dual scale factors") were independently applied to the obtained harmonic vibrational spectral data to fit them to the corresponding experimental data. In the light of the obtained calculation results, which confirm the remarkable effects of conformation and intermolecular hydrogen bonding on the structural and vibrational spectral data, in particular, on those associated with the functional groups in the propanoic acid chain, a reliable assignment of the fundamental bands observed in the experimental IR and Raman spectra of the molecule was achieved.
机译:通过分子建模和实验1R和拉曼光谱技术研究了Naproxen的结构和振动性质,环氧化酶(COX)酶的抑制剂。通过用MM2力场进行的分子动力学模拟来搜索分子的可能组合器。通过使用B3LYP方法和不同尺寸的Pople-Squence基组进行的几何优化和谐波频率计算来确定发现稳定的稳定剂的总能量,平衡几何形状,力场,IR和拉曼光谱数据。通过使用G3MP2B3复合方法进行的高精度热化学计算证实了对最低能量整形剂获得的稳定性顺序。通过天然人口分析(NPA)和B3LYP / 6-31 ++ G(D,P)和B3LYP / 6-311 +的天然群体分析(NPA)和Anharmonic频率计算确定其振动模式的一些电子结构参数和其振动模式的Anharmonicity特征。 + g(d,p)理论水平。对于自由萘普生分子进行的这些计算的一部分也重复了其能量最有利的二聚体形式。两种不同的缩放程序((1)SQM-FF方法“和(2)”双尺度因子“)独立地应用于所获得的谐波振动谱数据,以将它们拟合到相应的实验数据。鉴于获得的计算结果,其证实了构象和分子间氢键合在结构和振动谱数据上的显着效果,特别是与丙酸链中的官能团相关的那些,这是基本的可靠性达到了在分子的实验IR和拉曼光谱中观察到的带。

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