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首页> 外文期刊>Journal of Molecular Structure >A theoretical vibrational spectroscopic study with density functional theory and force field refinement calculation methods on free 4-aminopyrimidine molecule
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A theoretical vibrational spectroscopic study with density functional theory and force field refinement calculation methods on free 4-aminopyrimidine molecule

机译:游离4-氨基嘧啶分子的密度泛函理论和力场细化计算方法的理论振动光谱研究

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摘要

A detailed investigation of the geometric structure, force field, electro-optical parameters, relative IR intensities and harmonic vibrational wavenumbers of free 4-aminopyrimidine molecule (4APM) in the electronically ground state has been carried out by using both the DFT-B3LYP (with 6-31 + +G(d,p) double and 6-311 + +G(d,p) triple basis sets) and force field refinement calculation methods. The vibrational wavenumbers calculated with DFT method were scaled by using two different methods: (1) scaling with dual scaling factors, (2) deriving the scaling factors from the graph of observed versus calculated wavenumbers. In the case of force field refinement method, the force constants of the pyrimidine were slightly refined so as to fit the calculated wavenumbers to the experimental ones. In order to define the contributions of the internal coordinates of the molecule on its each normal vibrational mode, P.E.D. calculations were performed. In wavenumber and PED calculations, both methods have yield results in agreement with the experimental assignment and also with each other, particularly for ring vibrations. The relative IR intensities calculated by the force field refinement method are considerably in good agreement with experimental ones, however, the results of the IR intensities, obtained from the DFT method are found to be significantly different from the experimental values. (c) 2004 Elsevier B.V. All rights reserved.
机译:结合使用DFT-B3LYP(与DFT-B3LYP(具有6-31 + + G(d,p)双和6-311 + + G(d,p)三基)和力场细化计算方法。通过DFT方法计算出的振动波数可以通过两种不同的方法进行缩放:(1)使用双重缩放因子进行缩放;(2)从观察到的波数与计算出的波数图表中得出缩放因子。在力场细化方法的情况下,将嘧啶的力常数略微细化,以使计算出的波数与实验值相符。为了定义分子内部坐标对每个正常振动模式的贡献,P.E.D。进行了计算。在波数和PED计算中,两种方法的屈服结果均与实验结果一致,而且彼此之间也是如此,尤其是对于环振动。通过力场细化方法计算出的相对红外强度与实验值相当吻合,但是,从DFT方法获得的红外强度结果却与实验值明显不同。 (c)2004 Elsevier B.V.保留所有权利。

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