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σ-共轭和氢键导向的超分子自组装:高效长寿命室温磷光有机分子晶体的关键特征

σ-Conjugation and H-Bond-Directed Supramolecular Self-Assembly: Key Features for Efficient Long-Lived Room Temperature Phosphorescent Organic Molecular Crystals.

作者信息

Demangeat Catherine, Dou Yixuan, Hu Bin, Bretonnière Yann, Andraud Chantal, D'Aléo Anthony, Wu Jeong Weon, Kim Eunkyoung, Le Bahers Tangui, Attias André-Jean

机构信息

Building Blocks for FUture Electronics Laboratory, UMI 2002, CNRS-Sorbonne Université-Yonsei University, Yonsei University, 50 Yonsei-ro, Seodaemun-gu, Seoul, 03722, South Korea.

Department of Materials Science and Engineering, University of Tennessee, Knoxville, TN, 37996, USA.

出版信息

Angew Chem Int Ed Engl. 2021 Feb 1;60(5):2446-2454. doi: 10.1002/anie.202011770. Epub 2020 Dec 1.

Abstract

Long-lived room temperature phosphorescence from organic molecular crystals attracts great attention. Persistent luminescence depends on the electronic properties of the molecular components, mainly π-conjugated donor-acceptor (D-A) chromophores, and their molecular packing. Here, a strategy is developed by designing two isomeric molecular phosphors incorporating and combining a bridge for σ-conjugation between the D and A units and a structure-directing unit for H-bond-directed supramolecular self-assembly. Calculations highlight the critical role played by the two degrees of freedom of the σ-conjugated bridge on the chromophore optical properties. The molecular crystals exhibit RTP quantum yields up to 20 % and lifetimes up to 520 ms. The crystal structures of the efficient phosphorescent materials establish the existence of an unprecedented well-organization of the emitters into 2D rectangular columnar-like supramolecular structure stabilized by intermolecular H-bonding.

摘要

有机分子晶体的长寿命室温磷光引起了极大关注。持续发光取决于分子组分的电子性质,主要是π共轭供体-受体(D-A)发色团及其分子堆积。在此,通过设计两种异构分子磷光体开发了一种策略,该磷光体结合并组合了用于D和A单元之间σ共轭的桥以及用于氢键导向的超分子自组装的结构导向单元。计算突出了σ共轭桥的两个自由度对发色团光学性质所起的关键作用。分子晶体表现出高达20%的室温磷光量子产率和高达520毫秒的寿命。高效磷光材料的晶体结构证实了发射体以前所未有的方式良好组织成二维矩形柱状超分子结构,该结构由分子间氢键稳定。

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