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具有柔性间隔基的给体-受体-给体三联体:用于靶向材料设计的复杂光物理特性解析

Donor-Acceptor-Donor Triads with Flexible Spacers: Deciphering Complex Photophysics for Targeted Materials Design.

作者信息

Feng Siyang, Wang Liangxuan, Milián-Medina Begoña, Meixner Alfred J, Kwon Min Sang, Park Soo Young, Wannemacher Reinhold, Gierschner Johannes

机构信息

Madrid Institute for Advanced Studies, IMDEA Nanoscience, Calle Faraday 9, Ciudad Universitaria de Cantoblanco, Madrid, 28049, Spain.

Institute of Physical and Theoretical Chemistry, Eberhard Karls University Tübingen, Auf der Morgenstelle 18, 72076, Tübingen, Germany.

出版信息

Adv Mater. 2023 Nov;35(44):e2306678. doi: 10.1002/adma.202306678. Epub 2023 Sep 22.

Abstract

The complex photokinetics of donor-acceptor-donor triads with varying flexible spacer lengths (n = 4-10 carbon atoms) are investigated in liquid and solid solution, as well as in crystals, by steady-state and transient fluorescence spectroscopy combined with computational studies. For the short spacer (n = 4) in a liquid solution, dynamic charge-transfer (CT) state formation with subsequent, efficient exciplex emission is observed, effectively competing with quenching through electron transfer (eT) via a radical ion pair. In a solid solution, a fluorescent CT static complex is formed upon freezing for all spacer lengths. This allows the observations of a former seminal report on stimuli-responsive high-contrast fluorescence on/off switching in films of the triads to be reassigned (Adv. Mater. 2012, 24, 5487), now providing a holistic picture on varying spacer length. In fact, external stimuli of the film by modulating the geometry of the CT complex, which results in on/off fluorescence switching (for n > 4) or in a change of the emission color (n = 4). The work thus demonstrates how in-depth analysis of complex photophysics can be put to practical use in materials science.

摘要

通过稳态和瞬态荧光光谱结合计算研究,在液体和固体溶液以及晶体中研究了具有不同柔性间隔长度(n = 4 - 10个碳原子)的供体-受体-供体三联体的复杂光动力学。对于液体溶液中的短间隔(n = 4),观察到动态电荷转移(CT)态的形成以及随后有效的激基复合物发射,其有效地与通过自由基离子对的电子转移(eT)猝灭竞争。在固体溶液中,对于所有间隔长度,冷冻时都会形成荧光CT静态复合物。这使得对三联体薄膜中刺激响应性高对比度荧光开/关切换的先前开创性报告的观察结果能够重新解释(《先进材料》,2012年,24卷,5487页),现在提供了关于不同间隔长度的整体情况。实际上,通过调节CT复合物的几何形状对薄膜进行外部刺激,这会导致开/关荧光切换(n > 4)或发射颜色的变化(n = 4)。这项工作因此展示了如何将复杂光物理的深入分析实际应用于材料科学。

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