Article ID Journal Published Year Pages File Type
1230515 Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 2014 9 Pages PDF
Abstract

•The structural and vibrational properties of dimer of furoic acid were predicted.•A complete assignment of the 66 normal vibrational modes for the dimer was performed.•The NBO analysis reveals the high stability of the monomer and dimer trans.•The electrostatic potentials have shown symmetrical structures for the two dimers.•The calculations show that the cis dimer is present in the solid phase.

The structural and vibrational properties of cyclic dimer of 2-furoic acid (2FA) were predicted by combining the available experimental infrared and Raman spectra in the solid phase and ab initio calculations based on density functional theory (DFT) with Pople’s basis sets. The calculations show that there are two cyclic dimers for the title molecule that have been theoretically determined in the gas phase, and that only one of them, cis conformer, is present in the solid phase. The complete assignment of the 66 normal vibrational modes for the cis cyclic dimer was performed using the Pulay’s Scaled Quantum Mechanics Force Field (SQMFF) methodology. Four strong bands in the infrared spectrum at 1583, 1427, 1126 and 887 cm−1 and the group of bands in the Raman spectrum at 1464, 1452, 1147, 1030, 885, 873, 848, 715 and 590 cm−1 are characteristic of the dimeric form of 2FA in the solid phase. In this work, the calculated structural and vibrational properties of both dimeric species were analyzed and compared between them. In addition, three types of atomic charges, bond orders, possible charge transfer, topological properties of the furan rings, Natural Bond Orbital (NBO) and Atoms in Molecules (AIM) theory calculations were employed to study the stabilities and intermolecular interactions of the both dimers of 2FA.

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Physical Sciences and Engineering Chemistry Analytical Chemistry
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