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Non-aromatic annulene-based aggregation-induced emission system via aromaticity reversal process

机译:基于非芳族含环的聚集诱导的发射系统通过芳香性逆转过程

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Aggregation-induced emission (AIE) is a photophysical phenomenon correlated closely with the excited-state intramolecular motions. Although AIE has attracted increasing attention due to the significant applications in biomedical and optoelectronics, an in-depth understanding of the excited-state intramolecular motion has yet to be fully developed. Here we found the non-aromatic annulene derivative of cyclooctatetrathiophene shows typical AIE phenomenon in spite of its rotor-free structure. The underlying mechanism is investigated through photoluminescence spectra, time-resolved absorption spectra, theoretical calculations, circular dichroism as well as by pressure-dependent fluorescent spectra etc., which indicate that the aromaticity reversal from ground state to the excited state serves as a driving force for inducing the excited-state intramolecular vibration, leading to the AIE phenomenon. Therefore, aromaticity reversal is demonstrated as a reliable strategy to develop vibrational AIE systems. This work also provides a new viewpoint to understand the excited-state intramolecular motion behavior of lumiongens.
机译:聚集诱导的发射(AIE)是一种与激发态分子内运动密切相关的光物理现象。尽管由于生物医学和光电子的重要应用,AIE引起了越来越大的关注,但对兴奋状态的分子内运动的深入了解尚未得到充分发展。在这里,我们发现环偶离子蛋白的非芳香族含环衍生物显示出典型的AIE现象,尽管是无转子的结构。通过光致发光光谱,时间分辨的吸收光谱,理论计算,圆形二色性以及压力依赖性荧光光谱等来研究潜在的机制,这表明从地面状态到激发状态的芳香性反转用作驱动力用于诱导兴奋状态的分子内振动,导致AIE现象。因此,芳香性逆转被证明是开发振动AIE系统的可靠策略。这项工作还提供了了解Lumiongens的激发态分子内运动行为的新观点。

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