"Dunarea de Jos" University, Department of Chemistry, Physics and Environment, Domneasca St. 47, 800008 Galati, Romania.
"Dunarea de Jos" University, Department of Chemistry, Physics and Environment, Domneasca St. 47, 800008 Galati, Romania.
Spectrochim Acta A Mol Biomol Spectrosc. 2017 Feb 5;172:115-125. doi: 10.1016/j.saa.2016.04.024. Epub 2016 Apr 12.
The aim of this work is to characterize a quite novel 3-dithiocarbamic flavonoid by vibrational spectroscopy in conjunction with Density Functional Theory (DFT) calculations. Quantum mechanics calculations of energies, geometries and vibrational wavenumbers in the ground state were carried out by using hybrid functional B3LYP with 6-311G(d,p) as basis set. The results indicate a remarkable agreement between the calculated molecular geometries, as well as vibrational frequencies, and the corresponding experimental data. In addition, a complete assignment of all the absorption bands present in the vibrational spectrum has been performed. In order to assess its chemical potential, quantum molecular descriptors characterizing the interactions between the 3-dithiocarbamic flavonoid and its biological receptors have been computed. The frontier molecular orbitals and the HOMO-LUMO energy gap have been used in order to explain the way in which the new molecule can interact with other species and to characterize its molecular chemical stability/reactivity. The molecular electrostatic potential (MEP) map, computed in order to identify the sites of the studied flavonoid that are most likely to interact with electrophilic and nucleophilic species, is discussed.
本工作旨在通过振动光谱结合密度泛函理论(DFT)计算来表征一种相当新颖的 3-二硫代氨基甲酸黄酮。采用混合泛函 B3LYP 与 6-311G(d,p)基组对基态下的能量、几何形状和振动波数进行了量子力学计算。结果表明,计算的分子几何形状以及振动频率与相应的实验数据之间存在显著的一致性。此外,还对振动光谱中存在的所有吸收带进行了完整的归属。为了评估其化学势,计算了表征 3-二硫代氨基甲酸黄酮与其生物受体相互作用的量子分子描述符。前线分子轨道和 HOMO-LUMO 能隙用于解释新分子与其他物质相互作用的方式,并表征其分子化学稳定性/反应性。讨论了为识别研究的黄酮类化合物最有可能与亲电和亲核物种相互作用的位点而计算的分子静电势(MEP)图。