Lee Yu Ran, Park Chung Bin, Hwang Jiye, Sung Bong June, Kim Hong Lae, Kwon Chan Ho
Department of Chemistry and Institute for Molecular Science and Fusion Technology, Kangwon National University , Chuncheon 24341, Korea.
Department of Chemistry, Sogang University , Seoul 04107, Korea.
J Phys Chem A. 2017 Feb 9;121(5):1163-1167. doi: 10.1021/acs.jpca.6b12724. Epub 2017 Jan 26.
We have measured the high-resolution vibrational spectra of a thietane (trimethylene sulfide) cation in the gas phase by employing the vacuum ultraviolet mass-analyzed threshold ionization (VUV-MATI) spectroscopic technique. Peaks in the low-frequency region of the observed MATI spectrum of thietane originate from a progression of the ring-puckering vibrational mode (typical in small heterocyclic molecules), which is successfully reproduced by quantum-chemical calculations with 1D symmetric double-well potentials along the ring puckering coordinates on both the S and D states, the ground electronic states of neutral and cation of thietane, respectively. The values of the interconversion barrier and the ring-puckering angle on the S state, the parameters used for the quantum-chemical calculations, were assumed to be 274 cm and 26°. The barrier and the angle on the D state, however, are found to be 48.0 cm and 18.2°, respectively, where such small barrier height and puckering angle for the cation suggest that the conformation of thietane cation on the D state should be more planar than that of the thietane neutral.
我们采用真空紫外光质量分析阈值电离(VUV-MATI)光谱技术,测量了气相中硫杂环丁烷(三亚甲基硫醚)阳离子的高分辨率振动光谱。硫杂环丁烷的MATI光谱低频区域的峰源自环皱缩振动模式(在小杂环分子中很典型)的跃迁,通过量子化学计算沿着硫杂环丁烷中性分子和阳离子的基态电子态S态和D态的环皱缩坐标,用一维对称双阱势成功再现了该跃迁。量子化学计算中使用的参数,即S态上的相互转换势垒值和环皱缩角,假定分别为274 cm⁻¹和26°。然而,发现D态上的势垒和角度分别为48.0 cm⁻¹和18.2°,阳离子如此小的势垒高度和皱缩角表明,硫杂环丁烷阳离子在D态上的构象应比硫杂环丁烷中性分子的构象更平面。