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二氢芘/环二烯光致变色对的电子激发态和紫外-可见吸收光谱:理论研究

Electronic Excited States and UV-Vis Absorption Spectra of the Dihydropyrene/Cyclophanediene Photochromic Couple: a Theoretical Investigation.

作者信息

Sarkar Rudraditya, Heitz Marie-Catherine, Royal Guy, Boggio-Pasqua Martial

机构信息

Laboratoire de Chimie et Physique Quantiques , UMR 5626, IRSAMC, CNRS et Université Toulouse 3 , 118 Route de Narbonne , 31062 Toulouse , France.

Université Grenoble Alpes , CNRS, DCM , F-38000 Grenoble , France.

出版信息

J Phys Chem A. 2020 Feb 27;124(8):1567-1579. doi: 10.1021/acs.jpca.9b11262. Epub 2020 Feb 17.

Abstract

Dihydropyrene (DHP)/cyclophanediene (CPD) is a fascinating photoswitchable organic system displaying negative photochromism. Upon irradiation in the visible region, the colored DHP can be converted to its open-ring CPD colorless isomer, which can be converted back to DHP by UV light. DHP and CPD thus possess very different absorption spectra whose absorption bands have never been assigned in detail so far. In this work, we characterize the vertical electronic transitions of the first six and seven excited states of DHP and CPD, respectively, aiming for a realistic comparison with experiment. We used state-of-the-art electronic structure methods [e.g., complete active space second-order perturbation theory (CASPT2), -electron valence-state perturbation theory (NEVPT2), extended multiconfigurational quasi-degenerate perturbation theory (XMCQDPT2), and third-order algebraic diagrammatic construction ADC(3)] capable of describing differential electron correlation. Vertical transition energies were also computed with time-dependent density functional theory (TD-DFT) and compared to these accurate methods. After the reliability of TD-DFT was validated for the main optical transitions, this efficient method was used to simulate the absorption spectra of DHP and CPD in the framework of the Franck-Condon Herzberg-Teller approximation and also using the nuclear ensemble approach. Overall, for both methods, the simulated absorption spectra reproduce nicely the main spectral features of the DHP and CPD isomers, that is, the main four absorption bands of increasing intensity of DHP and the absorption rise below 300 nm for CPD.

摘要

二氢芘(DHP)/环二烯(CPD)是一种引人入胜的可光开关有机体系,呈现负光致变色现象。在可见光区域照射下,有颜色的DHP可转化为其开环的无色CPD异构体,而该异构体可通过紫外光再转化回DHP。因此,DHP和CPD具有非常不同的吸收光谱,其吸收带迄今尚未得到详细归属。在这项工作中,我们分别对DHP和CPD的前六个和七个激发态的垂直电子跃迁进行了表征,旨在与实验进行实际比较。我们使用了能够描述差分电子关联的最先进电子结构方法[例如,完全活性空间二阶微扰理论(CASPT2)、 -电子价态微扰理论(NEVPT2)、扩展多组态准简并微扰理论(XMCQDPT2)和三阶代数图示构建法ADC(3)]。还用时域密度泛函理论(TD-DFT)计算了垂直跃迁能量,并与这些精确方法进行了比较。在验证了TD-DFT对主要光学跃迁的可靠性之后,使用这种高效方法在弗兰克 - 康登 - 赫兹伯格 - 特勒近似框架下以及采用核系综方法模拟了DHP和CPD的吸收光谱。总体而言,对于这两种方法,模拟的吸收光谱都很好地再现了DHP和CPD异构体的主要光谱特征,即DHP强度递增的主要四个吸收带以及CPD在300 nm以下的吸收上升。

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