Tama Saragi Rizalina, Li Wenqin, Juanes Marcos, Enríquez Lourdes, Pinacho Ruth, Rubio José Emiliano, Lesarri Alberto
Departamento de Química Física y Química Inorgánica -, I.U. CINQUIMA, Facultad de Ciencias, Universidad de Valladolid, Paseo de Belén 7, 47011, Valladolid, Spain.
Present address: Institut für Ionenphysik und Angewandte Chemie, Universität Innsbruck, Technikerstr. 25/4. OG, 6020, Innsbruck, Austria.
Chemphyschem. 2024 Mar 1;25(5):e202300799. doi: 10.1002/cphc.202300799. Epub 2024 Feb 6.
We present a rotational-computational investigation of the aromatic mercaptan 2-phenylethanethiol, addressing its potential energy surface, conformational equilibrium, internal dynamics and intramolecular interactions. The experiment used broadband chirped-pulse Fourier transform microwave spectroscopy in a supersonic jet expansion, recording the rotational spectrum in the 2-8 GHz frequency region. Two different conformers were detected in the spectrum. The most intense transitions correspond to a skew (gauche-gauche) conformation, identified as the global minimum. The spectra of ten different isotopologues were assigned for this species, leading to accurate effective and substitution structures. The weaker spectrum presents small tunnelling doublings caused by the torsional motion of the thiol group, which are only compatible with an antiperiplanar skeleton and a gauche thiol. The larger stability of the global minimum is attributed to an intramolecular S-H⋅⋅⋅π weak hydrogen bond. A comparison of the intramolecular interactions in the title molecule and 2-phenylethanol, similarly stabilized by a O-H⋅⋅⋅π hydrogen bond, shows the different strength of these interactions. Density functional (B3LYP-D3, B2PLYP-D3) and ab initio (MP2) calculations were conducted for the molecule.
我们对芳族硫醇2-苯乙硫醇进行了旋转计算研究,探讨了其势能面、构象平衡、内部动力学和分子内相互作用。该实验在超声速喷射膨胀中使用宽带啁啾脉冲傅里叶变换微波光谱,记录了2-8 GHz频率区域的旋转光谱。在光谱中检测到两种不同的构象异构体。最强的跃迁对应于一种扭曲(gauche-gauche)构象,被确定为全局最小值。为该物种指定了十种不同同位素异构体的光谱,从而得到了精确的有效结构和取代结构。较弱的光谱呈现出由硫醇基团的扭转运动引起的小隧道分裂,这仅与反式共平面骨架和gauche硫醇兼容。全局最小值的较大稳定性归因于分子内S-H⋅⋅⋅π弱氢键。对标题分子和同样由O-H⋅⋅⋅π氢键稳定的2-苯乙醇中的分子内相互作用进行比较,显示了这些相互作用的不同强度。对该分子进行了密度泛函(B3LYP-D3、B2PLYP-D3)和从头算(MP2)计算。