Zahedi-Tabrizi Mansoureh, Gerivani Bentolhoda, Tayyari Sayyed Faramarz
Department of Chemistry, Alzahra University, Vanak, Tehran, Iran.
Department of Chemistry, Alzahra University, Vanak, Tehran, Iran.
Spectrochim Acta A Mol Biomol Spectrosc. 2015 Feb 5;136 Pt B:731-42. doi: 10.1016/j.saa.2014.09.089. Epub 2014 Sep 30.
The molecular structure of 3-(ortho-methoxyphenylthio) pentane-2,4-dione (o-MPTPD) and 3-(para-methoxyphenylthio) pentane-2,4-dione (p-MPTPD) has been investigated by means of Density Functional Theory (DFT) calculations. The results were compared with 3-(phenylthio) pentane-2,4-dione (PTPD), 3-(methylthio) pentane-2,4-dione (MTPD), and their parent, pentane-2,4-dione (known as acetylacetone, AA). The full optimized geometry, the IR and Raman frequencies and their intensities has been calculated at the B3LYP/6-311++G(∗∗) level of theory. The calculated frequencies were compared with the experimental results. The IR and Raman spectra of o-MPTPD and p-MPTPD and their deuterated analogs are recorded in the 3200-200 cm(-1) range. The quantum theory of atoms in molecules (QTAIM) was applied to calculate the topological parameters of electron density distributions and charge transfer energy associated with the intramolecular hydrogen bond (IHB). Natural bond orbital analysis (NBO) was performed for investigation of electron delocalization in these compounds. According to the theoretical and experimental data, the hydrogen bond strength in the 3-thio-pentane-2,4-dione derivatives is much stronger than that in AA. The results of theoretical calculations are in excellent agreement with the vibrational and NMR spectroscopy data.
采用密度泛函理论(DFT)计算方法研究了3 - (邻甲氧基苯硫基)戊烷 - 2,4 - 二酮(o - MPTPD)和3 - (对甲氧基苯硫基)戊烷 - 2,4 - 二酮(p - MPTPD)的分子结构。将结果与3 - (苯硫基)戊烷 - 2,4 - 二酮(PTPD)、3 - (甲硫基)戊烷 - 2,4 - 二酮(MTPD)及其母体戊烷 - 2,4 - 二酮(即乙酰丙酮,AA)进行了比较。在B3LYP/6 - 311++G(∗∗)理论水平上计算了完全优化的几何结构、红外和拉曼频率及其强度。将计算得到的频率与实验结果进行了比较。记录了o - MPTPD和p - MPTPD及其氘代类似物在3200 - 200 cm(-1)范围内的红外和拉曼光谱。应用分子中的原子量子理论(QTAIM)计算了与分子内氢键(IHB)相关的电子密度分布拓扑参数和电荷转移能量。进行了自然键轨道分析(NBO)以研究这些化合物中的电子离域情况。根据理论和实验数据,3 - 硫代 - 戊烷 - 2,4 - 二酮衍生物中的氢键强度比乙酰丙酮中的强得多。理论计算结果与振动光谱和核磁共振光谱数据非常吻合。