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萘二酰亚胺环番衍生物振动分辨吸收光谱的理论模拟

Theoretical simulations for vibrationally-resolved absorption spectra of naphthalenediimide cyclophane derivatives.

作者信息

Song Ce, Li Li, Duan Sai, Luo Yi, Tian Guangjun

机构信息

College of Science, Yanshan University, Qinhuangdao 066004, China; Department of Theoretical Chemistry and Biology, School of Biotechnology, Royal Institute of Technology, Stockholm S-106 91, Sweden.

College of Science, Yanshan University, Qinhuangdao 066004, China.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2017 Aug 5;183:339-347. doi: 10.1016/j.saa.2017.04.024. Epub 2017 Apr 21.

Abstract

In the present work we systematically investigated the vibrationally-resolved absorption spectra of three core substituted naphthalenediimide cyclophane derivatives. It has been performed by time-dependent density functional theory calculations using three different exchange-correlation functionals, including the conventional B3LYP functional and two long-range corrected functionals: CAM-B3LYP and ωB97XD. The solvent effects were also considered with the polarizable continuum model. Calculation results showed that long range corrections are needed to correctly describe the optical properties of the three molecules because of the strong charge transfer characteristic of the excited states. The core substitution induced red shift to the first absorption band is nicely explained by the theoretical calculations. It is found that this band mainly involves the transitions within the core substituted naphthalenediimide chromophore. The high energy absorption band, on the other hand, is generated mainly from the un-substituted chromophore. These characters result in different substitution dependence for those two main absorption bands. Furthermore, the simulated vibrational profiles of the first two absorption bands nicely reproduce the observed vibrational features in the measured spectra. The accuracy of the calculated results from different functionals and basis sets has been discussed.

摘要

在本工作中,我们系统地研究了三种核心取代的萘二酰亚胺环番衍生物的振动分辨吸收光谱。这是通过含时密度泛函理论计算完成的,使用了三种不同的交换相关泛函,包括传统的B3LYP泛函以及两种长程校正泛函:CAM - B3LYP和ωB97XD。还采用极化连续介质模型考虑了溶剂效应。计算结果表明,由于激发态具有很强的电荷转移特性,需要进行长程校正才能正确描述这三种分子的光学性质。理论计算很好地解释了核心取代导致第一吸收带红移的现象。发现该吸收带主要涉及核心取代的萘二酰亚胺发色团内的跃迁。另一方面,高能吸收带主要由未取代的发色团产生。这些特性导致这两个主要吸收带具有不同的取代依赖性。此外,前两个吸收带的模拟振动轮廓很好地再现了测量光谱中观察到的振动特征。还讨论了不同泛函和基组计算结果的准确性。

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