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萘的核心激发:振动结构与化学位移

Core excitations of naphthalene: vibrational structure versus chemical shifts.

作者信息

Minkov I, Gel'mukhanov F, Friedlein R, Osikowicz W, Suess C, Ohrwall G, Sorensen S L, Braun S, Murdey R, Salaneck W R, Agren H

机构信息

Royal Institute of Technology, S-106 91 Stockholm, Sweden.

出版信息

J Chem Phys. 2004 Sep 22;121(12):5733-9. doi: 10.1063/1.1784450.

Abstract

High-resolution x-ray photoelectron emission (XPS) and near-edge x-ray absorption fine structure (NEXAFS) spectra of naphthalene are analyzed in terms of the initial state chemical shifts and the vibrational fine structure of the excitations. Carbon atoms located at peripheral sites experience only a small chemical shift and exhibit rather similar charge-vibrational coupling, while the atoms in the bridging positions differ substantially. In the XPS spectra, C-H stretching modes provide important contributions to the overall shape of the spectrum. In contrast, the NEXAFS spectrum contains only vibrational progressions from particular C-C stretching modes. The accuracy of ab initio calculations of absolute electronic transition energies is discussed in the context of minute chemical shifts, the vibrational fine structure, and the state multiplicity.

摘要

根据激发态的初始态化学位移和振动精细结构,对萘的高分辨率X射线光电子发射(XPS)和近边X射线吸收精细结构(NEXAFS)光谱进行了分析。位于外围位置的碳原子仅经历很小的化学位移,并表现出相当相似的电荷 - 振动耦合,而桥连位置的原子则有很大差异。在XPS光谱中,C - H伸缩模式对光谱的整体形状有重要贡献。相比之下,NEXAFS光谱仅包含特定C - C伸缩模式的振动进展。在微小化学位移、振动精细结构和状态多重性的背景下,讨论了绝对电子跃迁能量的从头算计算的准确性。

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