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Tailoring colors by O-annulation of polycyclic aromatic hydrocarbons

机译:通过O型环化多环芳烃来定制颜色

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摘要

The synthesis of O-doped polyaromatic hydrocarbons, in which two polycyclic aromatic hydrocarbon subunits are bridged through one or two O atoms, has been achieved. This includes high-yielding ring-closure key steps that, depending on the reaction conditions, yield the formation of either furanyl or pyranopyranyl linkages through intramolecular C-O bond formation. Comprehensive photophysical measurements in solution showed that these molecules feature exceptionally high emission yields and tunable absorption properties throughout the UV-vis spectral region. Electrochemical investigations showed that in all cases the O-annulation increases the electron donor capabilities by raising the HOMO energy level with the LUMO energy level being less affected. Moreover, third-order NLO measurements of solutions or thin films containing the dyes displayed very good second hyperpolarizibility values. Importantly, PMMA films containing the pyranopyranyl derivatives displayed weak linear absorption and NLO absorption compared to the nonlinearity and NLO refraction, respectively, revealing to be exceptional organic materials for photonic devices.
机译:已经实现了其中两个多环芳烃亚基通过一个或两个O原子桥接的O掺杂多芳烃的合成。这包括高产的闭环关键步骤,这些关键步骤取决于反应条件,可通过分子内C-O键形成形成呋喃基或吡喃并吡喃基键。溶液中的综合光物理测量表明,这些分子在整个UV-vis光谱区域内具有极高的发射产率和可调的吸收特性。电化学研究表明,在所有情况下,O型环化都会通过提高HOMO能级来提高电子供体的能力,而LUMO能级的影响较小。此外,溶液或包含染料的薄膜的三阶NLO测量显示出非常好的第二超极化率值。重要的是,与吡喃并吡喃基衍生物相比,包含PMMA薄膜的线性吸收和NLO吸收要弱于非线性和NLO折射,这是光子器件的特殊有机材料。

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