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纯色彩有机发光体的纸笔设计:呫吨染料的奇特案例

Paper and Pencil Design of Color-Pure Organic Emitters: The Curious Case of Xanthene Dyes.

作者信息

Eskandari Morteza, Wang Liangxuan, Milián-Medina Begoña, Gierschner Johannes

机构信息

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

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

出版信息

J Phys Chem A. 2025 Feb 13;129(6):1599-1608. doi: 10.1021/acs.jpca.4c07313. Epub 2025 Jan 31.

Abstract

The quest for color-pure emitters for multicolor bioimaging as well as for ultrahigh definition organic light-emitting diodes demands facile design concepts to avoid tedious synthetic or computational trial-and-error procedures. We have recently presented a simple recipe to construct color-pure blue emitters, which combines basic resonance structure and frontier molecular orbital treatments; this recipe applies to multiresonant type emitters and allows to enlarge the chemical space toward novel structural motifs. In the current work, we show that such fundamental considerations further apply to the structurally entirely different family of xanthene dyes. Opposite to the related polymethine dye family with small bond length alternation (BLA) in the ground and in the excited state (S, S), however, xanthene dyes display large BLA in S and in S, so that the overall change in BLA, Δ, is small. This gives equally rise to color-pure emission; the underlying reasons for this curious behavior are carved out in the current study. This generalization of the recipe in fact constitutes the desired "paper and pencil" design strategy, spanning now the whole visible range.

摘要

对用于多色生物成像以及超高清有机发光二极管的纯色发射体的追求,需要简便的设计理念,以避免繁琐的合成或计算试错过程。我们最近提出了一种构建纯色蓝色发射体的简单方法,该方法结合了基本共振结构和前沿分子轨道处理;此方法适用于多共振型发射体,并允许朝着新型结构基序扩大化学空间。在当前工作中,我们表明这种基本考虑进一步适用于结构上完全不同的咕吨染料家族。然而,与在基态和激发态(S₀、S₁)中具有小键长交替(BLA)的相关聚甲炔染料家族相反,咕吨染料在S₀和S₁中显示出大的BLA,因此BLA的总体变化ΔBLA很小。这同样会产生纯色发射;当前研究阐明了这种奇特行为的潜在原因。实际上,该方法的这种推广构成了所需的“纸笔”设计策略,现在涵盖了整个可见光范围。

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