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呫吨类似物的激发态:光解离以及采用CC2和含时密度泛函理论的计算

Excited States of Xanthene Analogues: Photofragmentation and Calculations by CC2 and Time-Dependent Density Functional Theory.

作者信息

Kulesza Alexander Jan, Titov Evgenii, Daly Steven, Włodarczyk Radosław, Megow Jörg, Saalfrank Peter, Choi Chang Min, MacAleese Luke, Antoine Rodolphe, Dugourd Philippe

机构信息

Univ Lyon, Université Claude Bernard Lyon 1, CNRS, Institut Lumière Matière, F-69622, Lyon, France.

Universität Potsdam, Institut für Chemie, Karl-Liebknecht-Straße 24-25, Haus 25, D-14476, Potsdam, Germany.

出版信息

Chemphyschem. 2016 Oct 5;17(19):3129-3138. doi: 10.1002/cphc.201600650. Epub 2016 Aug 18.

Abstract

Action spectroscopy has emerged as an analytical tool to probe excited states in the gas phase. Although comparison of gas-phase absorption properties with quantum-chemical calculations is, in principle, straightforward, popular methods often fail to describe many molecules of interest-such as xanthene analogues. We, therefore, face their nano- and picosecond laser-induced photofragmentation with excited-state computations by using the CC2 method and time-dependent density functional theory (TDDFT). Whereas the extracted absorption maxima agree with CC2 predictions, the TDDFT excitation energies are blueshifted. Lowering the amount of Hartree-Fock exchange in the DFT functional can reduce this shift but at the cost of changing the nature of the excited state. Additional bandwidth observed in the photofragmentation spectra is rationalized in terms of multiphoton processes. Observed fragmentation from higher-lying excited states conforms to intense excited-to-excited state transitions calculated with CC2. The CC2 method is thus suitable for the comparison with photofragmentation in xanthene analogues.

摘要

行动光谱学已成为一种用于探测气相中激发态的分析工具。尽管原则上气相吸收特性与量子化学计算的比较很直接,但常用方法往往无法描述许多感兴趣的分子,比如呫吨类似物。因此,我们通过使用CC2方法和含时密度泛函理论(TDDFT),用激发态计算来面对它们的纳秒和皮秒激光诱导光解离。虽然提取的吸收最大值与CC2预测结果一致,但TDDFT激发能发生了蓝移。降低DFT泛函中哈特里-福克交换的量可以减少这种位移,但代价是改变激发态的性质。在光解离光谱中观察到的额外带宽可以用多光子过程来解释。从较高激发态观察到的解离与用CC2计算的强烈的激发态到激发态跃迁相符。因此,CC2方法适用于与呫吨类似物中的光解离进行比较。

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