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三种[7]螺旋烯衍生物的取代基对其电致发光(EMI)和圆偏振发光(CPL)光谱性质影响的振转效应分析

Vibronic Effects Analysis of the Substituent Effect on the Spectral Properties of the EMI and CPL of Three [7]Helicene Derivatives.

作者信息

Xu Qiushuang, Wang Meishan, Liu Yanli

机构信息

Department of Physics, Yantai University, Yantai 264005, China.

College of Integrated Circuits, Ludong University, Yantai 264005, China.

出版信息

Molecules. 2024 Dec 26;30(1):44. doi: 10.3390/molecules30010044.

Abstract

The substituent effect has a significant influence on the optical properties of spectral shape, width, and wavelength, and the intensities of the maximum peaks of emission (EMI) and circularly polarized luminescence (CPL). In this work, we conducted a systematic theoretical study to investigate how substituents alter the optical response in the EMI and CPL spectra of three [7]helicene derivatives at the vibronic level. To incorporate the vibronic effect, a state-of-the-art time-dependent (TD) method was used to achieve the fully converged spectra. In the meantime, a time-independent (TI) approach also provided a way to show the progression of the spectra, serving as a complementary strategy and creating reliable documentation for the experiment. The experimental spectra of EMI and CPL are nicely reproduced, which validates the reliability of the Adiabatic Hessian (AH) model in simulating experimental data. This allowed us to analyze in detail the effect of substituents, particularly on the optical responses. The introduction of cyano and methoxy groups is highlighted, as they altered the transition dipole moments and led to a 1000-fold increase in the intensity of EMI and CPL. Moreover, substituents can also rationally alter the spectral shape of EMI and CPL by affecting the responsible normal modes. The unique CN stretching and the MeO rotation in the substituted [7]helicene are highlighted as key factors contributing to the different behaviors of EMI and CPL. This sheds light on the design and synthesis of helicenes that can serve as ideal full-color EMI and CPL emitters.

摘要

取代基效应会对光谱形状、宽度、波长以及发射(EMI)和圆偏振发光(CPL)最大峰强度等光学性质产生显著影响。在本工作中,我们进行了系统的理论研究,以探究取代基如何在振子能级上改变三种[7]螺旋烯衍生物的EMI和CPL光谱中的光学响应。为了纳入振子效应,使用了一种先进的含时(TD)方法来获得完全收敛的光谱。同时,一种与时间无关(TI)的方法也提供了一种展示光谱进展的方式,作为一种补充策略,并为实验创建可靠的记录。EMI和CPL的实验光谱得到了很好的重现,这验证了绝热海森矩阵(AH)模型在模拟实验数据方面的可靠性。这使我们能够详细分析取代基的影响,特别是对光学响应的影响。氰基和甲氧基的引入尤为突出,因为它们改变了跃迁偶极矩,并导致EMI和CPL强度增加了1000倍。此外,取代基还可以通过影响相关的简正模式合理地改变EMI和CPL的光谱形状。取代的[7]螺旋烯中独特的CN伸缩和MeO旋转被强调为导致EMI和CPL不同行为的关键因素。这为可作为理想全色EMI和CPL发射体的螺旋烯的设计与合成提供了思路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5bfe/11721410/7df459f41eb8/molecules-30-00044-g001.jpg

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