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Study of the Formamide-Methanol Dimer with Ab Initio and Density Functional Theory Methods

机译:从头算和密度泛函理论方法研究甲酰胺-甲醇二聚体

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摘要

For the first time, the structures and energies for the hydrogen bonding of a 1:1 complex formed between formamide and methanol molecules have been computed with various pure and hybrid density functional theory (DFT) and ab initio methods at varied basis set levels from 6-31g to 6-31+g(d,p). Five reasonable geometries on the potential energy surface of methanol and formamide system are considered and their relative stability is discussed. The infrared (IR) spectrum frequencies, IR intensities, and vibrational frequency shifts are reported. From the systematic studies, it is found that all the DFT methods selected here correctly compute the dimerization energies and geometries, with the B3P86 method predicting the hydrogen bond lengths relatively shorter and BPW91 yielding the interaction energies relatively lower. Finally, the solvent effects on the geometries of the formamide-methanol complexes have also been investigated using self-consistent reaction field (SCRF) calculations with five different DFT methods at the 6-31+g(d,p) basis set level. The results indicate that the polarity of the solvent has played an important role on the structures and relative stabilities of different isomers. Moreover, the basis set superposition error correction is critical to the interaction energies in the polar solvents.
机译:首次使用各种纯和杂化密度泛函理论(DFT)和从头算方法在不同的基础水平上计算了甲酰胺与甲醇分子之间形成的1:1配合物氢键的结构和能量,从6开始-31g至6-31 + g(d,p)。考虑了甲醇和甲酰胺体系势能面上的五个合理的几何构型,并讨论了它们的相对稳定性。报告了红外(IR)频谱频率,IR强度和振动频移。从系统研究中可以发现,这里选择的所有DFT方法都能正确计算二聚能和几何形状,而B3P86方法预测氢键长度相对较短,而BPW91则产生相对较低的相互作用能。最后,还使用自洽反应场(SCRF)计算方法,在6-31 + g(d,p)基础水平上使用五种不同的DFT方法研究了溶剂对甲酰胺-甲醇配合物的几何形状的影响。结果表明,溶剂的极性对不同异构体的结构和相对稳定性起着重要作用。此外,基组叠加误差校正对于极性溶剂中的相互作用能至关重要。

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