Mani Devendra, Arunan E
Department of Inorganic and Physical Chemistry, Indian Institute of Science, Bangalore 560012, India.
J Chem Phys. 2014 Oct 28;141(16):164311. doi: 10.1063/1.4898378.
Pure rotational spectra of the propargyl alcohol dimer and its three deuterium isotopologues have been observed in the 4 to 13 GHz range using a pulsed-nozzle Fourier transform microwave spectrometer. For the parent dimer, a total of 51 transitions could be observed and fitted within experimental uncertainty. For two mono-substituted and one bi-substituted deuterium isotopologues, a total of 14, 17, and 19 transitions were observed, respectively. The observed rotational constants for the parent dimer [A = 2321.8335(4) MHz, B = 1150.4774(2) MHz, and C = 1124.8898(2) MHz] are close to those of the most stable structure predicted by ab initio calculations. Spectra of the three deuterated isotopologues and Kraitchman analysis positively confirm this structure. Geometrical parameters and "Atoms in Molecules" analysis on the observed structure reveal that the two propargyl alcohol units in the dimer are bound by three different types of hydrogen bonds: O-H⋯O, O-H⋯π, and C-H⋯π. To the best of our knowledge, propargyl alcohol seems to be the smallest molecule forming a homodimer with three different points of contact.
使用脉冲喷嘴傅里叶变换微波光谱仪,在4至13 GHz范围内观测到了炔丙醇二聚体及其三种氘代同位素变体的纯转动光谱。对于母体二聚体,在实验不确定度范围内总共观测到并拟合了51条跃迁谱线。对于两种单取代和一种双取代的氘代同位素变体,分别观测到了14条、17条和19条跃迁谱线。母体二聚体观测到的转动常数[A = 2321.8335(4) MHz,B = 1150.4774(2) MHz,C = 1124.8898(2) MHz]与从头算预测的最稳定结构的转动常数相近。三种氘代同位素变体的光谱以及克莱奇曼分析证实了这一结构。对观测到的结构进行几何参数和“分子中的原子”分析表明,二聚体中的两个炔丙醇单元通过三种不同类型的氢键结合:O-H⋯O、O-H⋯π和C-H⋯π。据我们所知,炔丙醇似乎是形成具有三个不同接触点的同二聚体的最小分子。