Tata Institute of Fundamental Research, Homi Bhabha Road, Colaba, Mumbai 400 005, India.
J Chem Phys. 2011 Oct 7;135(13):134306. doi: 10.1063/1.3645107.
In this article, hydrogen bonding interaction between p-cresol (p-CR) and cyclic ether, tetrahydrofuran (THF) and thioether, tetrahydrothiophene (THT) has been investigated. Two-color resonantly enhanced two-photon ionization in conjunction with the fluorescence detected IR (FDIR) spectroscopy was used to record the changes in the OH stretching frequency in these complexes. The FDIR spectra showed existence of a single conformer of the p-CR·THF and two conformers of the p-CR·THT complex. With the help of computed IR spectra and atoms-in-molecules analysis, the two conformers of p-CR·THT were assigned as the complex of p-CR with THT (C(2))/THT (C(S)). The redshift of OH stretching frequency for the p-CR·THF complex was greater compared to those for the conformers of the p-CR·THT complex. The binding energies of the p-CR·THF and p-CR·THT complexes were computed to be 7.42 and 6.15 kcal/mole. These were of the same order as those for the acyclic analogs, diethylether (DEE), and diethylsulfide (DES), of the solvent molecules under investigation. Although the DEE and THF consist of same number of carbon atoms, the dispersion energy contribution was much higher (43%) for DEE than that for THF (30%). In the case of sulfur analogs, however, it was similar (~50%) in the case of both DES well as THT complexes. All the computed H-bond indicators for these two complexes nicely correlate with the observed redshift of the O-H stretch.
本文研究了对甲酚(p-CR)与环状醚四氢呋喃(THF)和硫醚四氢噻吩(THT)之间的氢键相互作用。采用双色共振增强双光子电离与荧光检测红外(FDIR)光谱法记录了这些配合物中 OH 伸缩频率的变化。FDIR 光谱显示 p-CR·THF 存在单一构象,而 p-CR·THT 存在两种构象。借助计算红外光谱和原子在分子中的分析,将 p-CR·THT 的两种构象分配为 p-CR 与 THT(C(2))/THT(C(S))的复合物。与 p-CR·THT 配合物的 OH 伸缩频率红移大于 p-CR·THT 配合物的两种构象。计算得出 p-CR·THF 和 p-CR·THT 配合物的结合能分别为 7.42 和 6.15 kcal/mol。这些值与所研究溶剂分子的无环类似物二乙醚(DEE)和二乙基硫醚(DES)的结合能相当。尽管 DEE 和 THF 含有相同数目的碳原子,但 DEE 的色散能贡献(43%)远高于 THF(30%)。然而,在硫类似物的情况下,DES 和 THT 配合物的色散能贡献相似(约 50%)。这些两个配合物的所有计算氢键指标都与观察到的 O-H 伸缩红移很好地相关。