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单苯双发射体利用激发态反芳香性实现白光产生和荧光成像。

Single-Benzene Dual-Emitters Harness Excited-State Antiaromaticity for White Light Generation and Fluorescence Imaging.

作者信息

Kim Younghun, Kim Heechan, Son Jung Bae, Filatov Michael, Choi Cheol Ho, Lee Nam Ki, Lee Dongwhan

机构信息

Department of Chemistry, Seoul National University 1, Gwanak-ro, Gwanak-gu, 08826, Seoul, Korea.

Department of Chemistry, Kyungpook National University, 80 Daehak-ro, Buk-gu, 41566, Daegu, Korea.

出版信息

Angew Chem Int Ed Engl. 2023 May 8;62(20):e202302107. doi: 10.1002/anie.202302107. Epub 2023 Apr 12.

Abstract

Molecular emitters simultaneously generating light at different wavelengths have wide applications. With a small molecule, however, it is challenging to realize two independent radiative pathways. We invented the first examples of dual-emissive single-benzene fluorophores (SBFs). Two emissive tautomers are generated by synthetic modulation of the hydrogen bond acidity, which opens up pathways for excited-state proton transfer. White light is produced by a delicate balance between the energy and intensity of the emission from each tautomer. We show that the excited-state antiaromaticity of the benzene core itself dictates the proton movements driving the tautomer equilibrium. Using this simple benzene platform, a fluorinated SBF was synthesized with a record high solubility in perfluorocarbon solvents. White light-emitting devices and multicolor imaging of perfluorocarbon nanodroplets in live cells demonstrate the practical utility of these molecules.

摘要

同时在不同波长下发光的分子发射体具有广泛的应用。然而,对于小分子而言,实现两条独立的辐射途径具有挑战性。我们发明了首个双发射单苯荧光团(SBF)的实例。通过对氢键酸度进行合成调控生成了两种发射互变异构体,这为激发态质子转移开辟了途径。每种互变异构体发射的能量和强度之间的微妙平衡产生了白光。我们表明,苯环核心本身的激发态反芳香性决定了驱动互变异构平衡的质子运动。利用这个简单的苯平台,合成了一种在全氟碳溶剂中具有创纪录高溶解度的氟化SBF。白光发光器件以及活细胞中全氟碳纳米液滴的多色成像证明了这些分子的实际用途。

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