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基于第一性原理模拟的六种多环芳烃的振动分辨X射线光电子能谱

Vibrationally-Resolved X-ray Photoelectron Spectra of Six Polycyclic Aromatic Hydrocarbons from First-Principles Simulations.

作者信息

Cheng Xiao, Wei Minrui, Tian Guangjun, Luo Yi, Hua Weijie

机构信息

Hefei National Laboratory for Physical Science at the Microscale, University of Science and Technology of China, 230026 Hefei, China.

Department of Theoretical Chemistry and Biology, School of Engineering Sciences in Chemistry, Biotechnology and Health, Royal Institute of Technology, SE-106 91, Stockholm, Sweden.

出版信息

J Phys Chem A. 2022 Aug 25;126(33):5582-5593. doi: 10.1021/acs.jpca.2c04426. Epub 2022 Aug 12.

Abstract

Vibrationally resolved C 1s X-ray photoelectron spectra (XPS) of a series of six polycyclic aromatic hydrocarbons (PAHs; phenanthrene, coronene, naphthalene, anthracene, tetracene, and pentacene) were computed by combining the full core hole density functional theory and the Franck-Condon simulations with the inclusion of the Duschinsky rotation effect. Simulated spectra of phenanthrene, coronene, and naphthalene agree well with experiments both in core binding energies (BEs) and profiles, which validate the accuracy of our predictions for the rest molecules with no high-resolution experiments. We found that three types of carbons (inner C), (peripheral C bonded to three C atoms), and (peripheral C bonded to an H atom) show decreasing BEs. In linear PAHs (the latter four), -type carbons further split into 1 or 2 (on inner or edge benzene ring) subtypes with chemical shifts of ca. 0.2-0.4 eV. All major Franck-Condon-active modes are characterized to be in-plane vibrations: low-frequency (<800 cm) C-C ring deformation modes play an essential role in determining the peak asymmetries; and for each -type carbon a high-frequency (ca. 3600 cm) C*-H stretching mode is responsible for the high-energy tail. We found that core ionization leads to reduction of all C*-C and C*-H bond lengths and ring deformation with a definite direction. Based on theoretical spectra of four linear PAHs, we found asymptotic relations and anticipated possible spectral features for even larger linear PAHs. Our calculations provide accurate reference spectra for XPS characterizations of PAHs, which are useful in understanding the vibronic coupling effects in this family.

摘要

通过结合全芯孔密度泛函理论和弗兰克-康登模拟,并考虑杜申斯基旋转效应,计算了一系列六种多环芳烃(PAHs;菲、 coronene、萘、蒽、并四苯和并五苯)的振动分辨C 1s X射线光电子能谱(XPS)。菲、coronene和萘的模拟光谱在芯结合能(BEs)和谱形上与实验结果吻合良好,这验证了我们对其余没有高分辨率实验的分子预测的准确性。我们发现三种类型的碳(内部C)、(与三个C原子键合的外围C)和(与一个H原子键合的外围C)的BEs逐渐降低。在直链PAHs(后四种)中,-型碳进一步分裂为1或2个(在内侧或边缘苯环上)亚型,化学位移约为0.2-0.4 eV。所有主要的弗兰克-康登活性模式都被表征为面内振动:低频(<800 cm)C-C环变形模式在确定峰不对称性方面起着至关重要的作用;对于每种-型碳,高频(约3600 cm)C*-H伸缩模式导致高能尾部。我们发现芯电离导致所有C*-C和C*-H键长减小以及环沿特定方向变形。基于四种直链PAHs的理论光谱,我们发现了渐近关系并预测了更大直链PAHs可能的光谱特征。我们的计算为PAHs的XPS表征提供了准确的参考光谱,这有助于理解该家族中的振动电子耦合效应。

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