Islam Ahatashamul, Syundo Kensuke, Iimori Toshifumi
Department of Sciences and Informatics, Muroran Institute of Technology, Mizumoto-cho 27-1, Muroran, Hokkaido 050-8585, Japan.
Phys Chem Chem Phys. 2023 Aug 16;25(32):21317-21323. doi: 10.1039/d3cp01669b.
Tetracyanoquinodimethane (TCNQ) is an important constituent of organic conductors and a versatile electron acceptor. TCNQ exhibited thermally activated delayed fluorescence and an unusually long fluorescence lifetime. In this study, we studied the Stark effect on the absorption spectrum of TCNQ using electroabsorption spectroscopy to gain insights into its photophysics. The electroabsorption spectrum was simulated using multiple absorption bands for different electronic states, which were characterized by different dipole moments and polarizabilities. These electronic states are identified as a locally excited (LE) state with a high oscillator strength and zero dipole moment, and an intramolecular charge transfer (ICT) state with a nonzero dipole moment. The mixing of the LE state with the ICT state is augmented when the molecule is perturbed by an electric field. We provide tangible experimental evidence establishing the key role of mixing between the emissive LE and nonemissive ICT states in the deactivation pathway of electronically excited TCNQ. The dipole moment of the ICT state suggests symmetry breaking of the structure belonging to the point group.
四氰基对醌二甲烷(TCNQ)是有机导体的重要组成部分,也是一种通用的电子受体。TCNQ表现出热激活延迟荧光和异常长的荧光寿命。在本研究中,我们使用电吸收光谱研究了斯塔克效应(Stark effect)对TCNQ吸收光谱的影响,以深入了解其光物理性质。利用不同电子态的多个吸收带对电吸收光谱进行了模拟,这些电子态具有不同的偶极矩和极化率。这些电子态被确定为具有高振子强度和零偶极矩的局域激发(LE)态,以及具有非零偶极矩的分子内电荷转移(ICT)态。当分子受到电场干扰时,LE态与ICT态的混合会增强。我们提供了确凿的实验证据,证明了发光的LE态和非发光的ICT态之间的混合在电子激发的TCNQ失活途径中的关键作用。ICT态的偶极矩表明属于点群的结构发生了对称性破缺。