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使用电吸收和荧光光谱法探测苝四羧酸二亚胺中的激子离域和极化率

Exciton Delocalization and Polarizability in Perylenetetracarboxylic Diimide Probed Using Electroabsorption and Fluorescence Spectroscopies.

作者信息

Rahman Md Bulu, Islam Ahatashamul, Iimori Toshifumi

机构信息

Department of Sciences and Informatics, Muroran Institute of Technology, Mizumoto-cho 27-1, Muroran 050-8585, Hokkaido, Japan.

出版信息

Molecules. 2024 May 8;29(10):2206. doi: 10.3390/molecules29102206.

Abstract

Perylenetetracarboxylic diimide (PTCDI) is an n-type organic semiconductor molecule that has been widely utilized in numerous applications such as photocatalysis and field-effect transistors. Polarizability and dipole moment, which are inherent properties of molecules, are important parameters that determine their responses to external electric and optical fields, physical properties, and reactivity. These parameters are fundamentally important for the design of innovative materials. In this study, the effects of external electric fields on absorption and fluorescence spectra were investigated to obtain the PTCDI parameters. The PTCDI substituted by an octyl group (,'-Dioctyl-3,4,9,10-perylenedicarboximide) dispersed in a polymethyl methacrylate (PMMA) matrix was studied in this work. The features of vibronic progression in the absorption spectrum were analogous to those observed in solution. The red shift of the absorption band caused by the Stark effect was mainly observed in the presence of an external electric field. Changes in parameters such as the dipole moment and polarizability between the ground and the Franck-Condon excited states of the PTCDI monomer were determined. The fluorescence spectrum shows a contribution from a broad fluorescence band at wavelengths longer than the monomer fluorescence band. This broad fluorescence is ascribed to the excimer-like fluorescence of PTCDI. The effects of the electric field on the fluorescence spectrum, known as the Stark fluorescence or electrofluorescence spectrum, were measured. Fluorescence quenching is observed in the presence of an external electric field. The change in the polarizability of the monomer fluorescence band is in good agreement with that of the electroabsorption spectrum. A larger change in the polarizability was observed for the excimer-like fluorescence band than that for the monomer band. This result is consistent with exciton delocalization between PTCDI molecules in the excimer-like state.

摘要

苝四羧酸二亚胺(PTCDI)是一种n型有机半导体分子,已广泛应用于光催化和场效应晶体管等众多领域。极化率和偶极矩作为分子的固有属性,是决定其对外部电场和光场响应、物理性质及反应活性的重要参数。这些参数对于创新材料的设计至关重要。在本研究中,通过研究外部电场对吸收光谱和荧光光谱的影响来获取PTCDI的参数。本工作研究了分散在聚甲基丙烯酸甲酯(PMMA)基质中的辛基取代的PTCDI(‘,’-二辛基-3,4,9,10-苝二甲酰亚胺)。吸收光谱中振转跃迁的特征与在溶液中观察到的类似。在存在外部电场的情况下,主要观察到由斯塔克效应引起的吸收带红移。确定了PTCDI单体基态与弗兰克-康登激发态之间的偶极矩和极化率等参数的变化。荧光光谱显示在波长大于单体荧光带的区域有一个宽荧光带的贡献。这种宽荧光归因于PTCDI的准分子样荧光。测量了电场对荧光光谱的影响,即斯塔克荧光或电荧光光谱。在存在外部电场的情况下观察到荧光猝灭。单体荧光带的极化率变化与电吸收光谱的变化吻合良好。观察到准分子样荧光带的极化率变化比单体带的变化更大。这一结果与准分子样状态下PTCDI分子间的激子离域一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/03f1/11123886/1e2d1c3e8c50/molecules-29-02206-g001.jpg

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