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-二氯乙烯光电离光谱的实验和理论研究:低激发态阳离子中价壳层垂直电离和振子耦合。

An experimental and theoretical study of the photoelectron spectra of -dichloroethene: Valence shell vertical ionization and vibronic coupling in the low-lying cationic states.

机构信息

Laboratory of Quantum Chemistry, Irkutsk State University, Karl Marx Str. 1, 664003 Irkutsk, Russia.

School of Chemistry, University of Nottingham, Nottingham NG7 2RD, United Kingdom.

出版信息

J Chem Phys. 2018 Aug 21;149(7):074306. doi: 10.1063/1.5033425.

Abstract

The valence shell photoelectron spectrum of -dichloroethene has been studied both experimentally and theoretically. Photoelectron spectra have been recorded with horizontally and vertically plane polarized synchrotron radiation, thereby allowing the anisotropy parameters, characterizing the angular distributions, to be determined. The third-order algebraic-diagrammatic construction approximation scheme for the one-particle Green's function has been employed to compute the complete valence shell ionization spectrum. In addition, the vertical ionization energies have been calculated using the outer valence Green's function (OVGF) method and the equation-of-motion coupled-cluster, with single and double substitutions for calculating ionization potentials (EOM-IP-CCSD) model. The theoretical results have enabled assignments to be proposed for most of the structure observed in the experimental spectra, including the inner-valence regions dominated by satellite states. The linear vibronic coupling model has been employed to study the vibrational structure of the lowest photoelectron bands, using parameters obtained from calculations. The ground state optimized geometries and vibrational frequencies have been computed at the level of the second-order Møller-Plesset perturbation theory, and the dependence of the ionization energies on the nuclear configuration has been evaluated using the OVGF method. While the adiabatic approximation holds for the B state photoelectron band, the B, A, and A states interact vibronically and form a complex photoelectron band system with four distinct maxima. The B and B states also interact vibronically with each other. The potential energy surface of the B state is predicted to have a double-minimum shape with respect to the out-of-plane deformations of the molecular structure. The single photoelectron band resulting from this interaction is characterized by a highly irregular structure, reflecting the non-adiabatic nuclear dynamics occurring on the two coupled potential energy surfaces forming a conical intersection close to the minimum of the B state.

摘要

-二氯乙烯的价层光电子能谱已经通过实验和理论进行了研究。使用水平和垂直平面偏振同步辐射记录光电子能谱,从而可以确定各向异性参数,这些参数可以用来描述角分布。采用单粒子格林函数的三阶代数图论构造近似方案来计算完整的价层电离光谱。此外,还使用外价格林函数 (OVGF) 方法和含单、双激发的电子运动耦合簇理论 (EOM-IP-CCSD) 模型计算垂直电离能。理论结果使得实验光谱中观察到的大部分结构(包括由卫星态主导的内壳层区域)的归属得到了提出。采用线性振子耦合模型,使用从头计算得到的参数,研究了最低光电子带的振动结构。在二阶 Møller-Plesset 微扰理论水平上计算了基态优化的几何形状和振动频率,并使用 OVGF 方法评估了电离能对核构型的依赖性。尽管 B 态光电子带符合绝热近似,但 B、A 和 A 态通过振子相互作用,形成一个具有四个明显最大值的复杂光电子带系统。B 和 B 态也通过振子相互作用。预测 B 态的势能面在分子结构的面外变形方面具有双最小值形状。由于这种相互作用产生的单光电子带的特征是结构非常不规则,反映了在两个耦合势能面上发生的非绝热核动力学,在 B 态的最低点附近形成了一个锥形交叉点。

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