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基于联(多芳烃)的O-硼二吡咯中ICT概率的调控:迈向低成本明亮芳烃-硼二吡咯二元化合物的发展

Modulation of ICT probability in bi(polyarene)-based O-BODIPYs: towards the development of low-cost bright arene-BODIPY dyads.

作者信息

Gartzia-Rivero Leire, Sánchez-Carnerero Esther M, Jiménez Josue, Bañuelos Jorge, Moreno Florencio, Maroto Beatriz L, López-Arbeloa Iñigo, de la Moya Santiago

机构信息

Departamento de Química Física, Universidad del País Vasco-EHU, Apartado 644, 48080, Bilbao, Spain.

出版信息

Dalton Trans. 2017 Sep 12;46(35):11830-11839. doi: 10.1039/c7dt01984j.

Abstract

We report the synthesis, and spectroscopic and electrochemical properties of a selected library of novel spiranic O-BODIPYs bearing a phenol-based bi(polyarene) unit tethered to the boron center through oxygen atoms. These dyes constitute an interesting family of arene-BODIPY dyads useful for the development of photonic applications due to their synthetic accessibility and tunable photonic properties. It is demonstrated that the electron-donor capability of the involved arene moiety switches on a non-emissive intramolecular charge transfer (ICT) state, which restricts the fluorescence efficiency of the dyad. Interestingly, the influence of this non-radiative deactivation channel can be efficiently modulated by the substitution pattern, either at the dipyrrin ligand or at the polyarene moiety. Thus, dyads featuring electron-rich dipyrrin and electron-poor polyarene show lower or almost negligible ICT probability, and hence display bright fluorescence upon dual excitation at far-away spectral regions. This synthetic approach has allowed the easy development of low-cost efficient ultraviolet-absorbing visible-emitting cassettes by selecting properly the substitution pattern of the involved key units, dipyrrin and bi(polyarene), to modulate not only absorption and emission wavelengths, but also fluorescence efficiencies.

摘要

我们报道了一系列新型螺环O-硼二吡咯的合成、光谱和电化学性质,这些螺环O-硼二吡咯带有通过氧原子连接到硼中心的基于苯酚的联(多芳烃)单元。由于其合成的可及性和可调谐的光子性质,这些染料构成了一类有趣的芳烃-硼二吡咯二元化合物,可用于光子应用的开发。结果表明,所涉及的芳烃部分的给电子能力开启了一种非发射性的分子内电荷转移(ICT)状态,这限制了二元化合物的荧光效率。有趣的是,这种非辐射失活通道的影响可以通过二吡咯配体或多芳烃部分的取代模式有效地调节。因此,具有富电子二吡咯和缺电子多芳烃的二元化合物显示出较低或几乎可以忽略不计的ICT概率,因此在远光谱区域的双激发下表现出明亮的荧光。通过适当选择所涉及的关键单元二吡咯和联(多芳烃)的取代模式,这种合成方法使得低成本高效的紫外吸收可见发射盒易于开发,不仅可以调节吸收和发射波长,还可以调节荧光效率。

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