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Quantum mechanical and experimental infrared and Raman studies of 1-methyluracil and its hydrogen-bonded dimer

机译:1-甲基尿嘧啶及其氢键二聚体的量子力学和实验红外和拉曼研究

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Density functional theory at the B3LYP/6-31G(d,p) level has been used to calculate the structure, force field, and vibrational [infrared (IR) and Raman] spectra of the 1-methyluracil monomer and its dimer with the cyclic N3H...O=C4 hydrogen bonds. The experimental IR spectrum of the 1-methyluracil monomer isolated in a low-temperature Ar matrix and the IR and Raman spectra of its polycrystalline solid have been reinvestigated. The cyclic hydrogen bond for the calculated dimer is the same as that in the I-methyluracil crystal. It appears that calculation at this level of theory does provide IR and Raman spectra closely resembling the corresponding experimental spectra. We were amazed to find that the agreement between the calculated spectrum of the dimer and the experimental spectrum of the crystalline solid is not worse than the agreement between the calculated spectrum of the monomer and the experimental spectrum of 1-methyluracil isolated in an Ar matrix. The results of calculation appear to be useful in the interpretation of the experimental spectra of the monomer and crystal. The close agreement found between the calculated and experimental spectra suggests that force constants and geometries of the monomer and dimer are also predicted well by the calculation at this level. (C) 2002 Wiley Periodicals, Inc. [References: 37]
机译:在B3LYP / 6-31G(d,p)级别的密度泛函理论已用于计算1-甲基尿嘧啶单体及其带有环的二聚体的结构,力场和振动[红外(IR)和拉曼]光谱N3H ... O = C4氢键。对在低温Ar基质中分离的1-甲基尿嘧啶单体的实验IR光谱及其多晶固体的IR和拉曼光谱进行了重新研究。计算出的二聚体的环状氢键与I-甲基尿嘧啶晶体中的相同。看来,在此理论水平上的计算确实提供了与相应的实验光谱非常相似的IR和拉曼光谱。我们惊奇地发现,二聚体的计算光谱与结晶固体的实验光谱之间的一致性并不比单体的计算光谱与在Ar基质中分离的1-甲基尿嘧啶的实验光谱之间的一致性更差。计算结果似乎可用于解释单体和晶体的实验光谱。在计算光谱和实验光谱之间发现了密切的一致性,这表明单体和二聚体的力常数和几何形状也可以通过此水平的计算很好地预测。 (C)2002 Wiley Periodicals,Inc. [参考:37]

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