Liu ZhaoHui, Tang YaGuo, Niu ShanShan, Shan Xu, Xu ChunKai, Chen XiangJun
Hefei National Laboratory for Physical Sciences at the Microscale and Department of Modern Physics, University of Science and Technology of China, Hefei, Anhui 230026, China.
J Phys Chem A. 2020 Oct 15;124(41):8551-8561. doi: 10.1021/acs.jpca.0c07438. Epub 2020 Oct 5.
We report an electron momentum spectroscopy study on the valence electronic structure of dimethyl sulfide. The binding energy and electron momentum profiles are measured using a high-sensitivity (e, 2e) apparatus employing a symmetric non-coplanar geometry at an incident energy of 1200 eV plus binding energy. The measurements are compared with the theoretical calculations by density functional theory performed both at equilibrium molecular geometry and by considering vibrational effects through a harmonic analytical quantum mechanical approach. The results demonstrate a significant influence of nuclear vibrational motions on the momentum profiles for valence orbitals of dimethyl sulfide, especially for 5b, 1a, and 4b. A detailed analysis shows that the observed vibrational effects come mainly from vibrational normal modes breaking the mirror symmetry of (CH)S with respect to a plane perpendicular to the O-S-O plane.
我们报道了一项关于二甲基硫醚价电子结构的电子动量谱研究。使用高灵敏度的(e,2e)装置,在1200 eV加上结合能的入射能量下,采用对称非共面几何结构测量结合能和电子动量分布。将测量结果与通过密度泛函理论在平衡分子几何结构下以及通过谐波分析量子力学方法考虑振动效应所进行的理论计算进行比较。结果表明,核振动运动对二甲基硫醚价轨道的动量分布有显著影响,特别是对于5b、1a和4b轨道。详细分析表明,观察到的振动效应主要来自于振动简正模式打破了(CH)S相对于垂直于O - S - O平面的平面的镜像对称性。