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首页> 外文期刊>Dyes and Pigments >Tuning of the color of the emitted light from new polyperyleneimides containing oxadiazole and siloxane moieties
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Tuning of the color of the emitted light from new polyperyleneimides containing oxadiazole and siloxane moieties

机译:调整含有恶二唑和硅氧烷基团的新型聚per酰亚胺发出的光的颜色

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摘要

Four new aromatic poly(peryleneimides) containing electron-withdrawing oxadiazole rings and flexible tetramethyldisiloxane units in the backbone were prepared by a one step polycondensation reaction at high temperature of four aromatic diamines containing preformed oxadiazole units with a mixture, in different ratios, of perylenetetracarboxylic dianhydride and tetramethyldisiloxane-1,3-bis(4-phthalic anhydride). The structure of these polymers was confirmed by FT-IR and ~1H NMR spectroscopy. The solubility, thermal stability and glass transition temperature of the poly(peryleneimides) were measured and discussed in correlation with their chemical structure. The solid polymers were studied by X-ray diffraction which revealed a semicrystalline state consisting in face-to-face arranged columns of per-ylenediimide units for two of the polymers. The film-forming ability and the morphology of the resulting thin films were investigated using scanning electron microscopy which showed that two of the polymer films were organized into self-assembled rod-like structures. An extensive study of the photo-optical properties of these polymers highlighted the ability of the color of the emitted light to be modulated as a function of the excitation wavelengths, as was surveyed in the chromaticity diagrams. The Forster excitation energy transfer phenomenon from oxadiazole to perylenediimide chromophores was observed to occur for some of the polymers, for which the oxygen bridge appears to be responsible. In solution, high fluorescence quantum yields were obtained, up to 24%, while, in the solid state, low fluorescence emission was attained due to aggregation. These poly(peryleneimides) could be considered as promising candidates for high-performance materials to be used in novel optoelectronic applications, e.g. chemiluminescent sensors.
机译:通过在高温下对四种含有预先形成的恶二唑单元的芳族二胺与不同比例的tetra四羧酸二酐混合物进行一步缩聚反应,制备了四个在骨架中具有吸电子恶二唑环和柔性四甲基二硅氧烷单元的新型芳族聚二酰亚胺。和四甲基二硅氧烷-1,3-双(4-邻苯二甲酸酐)。这些聚合物的结构已通过FT-IR和〜1H NMR光谱确认。测量并讨论了聚per酰亚胺的溶解度,热稳定性和玻璃化转变温度,并对其化学结构进行了讨论。通过X射线衍射研究了固体聚合物,该X射线衍射揭示了半结晶态,该半结晶态由面对面布置的两种聚合物的全亚苯基二酰亚胺单元的列组成。使用扫描电子显微镜研究了形成的薄膜的成膜能力和形态,结果表明其中两个聚合物膜被组织成自组装的棒状结构。对这些聚合物的光学特性进行了广泛的研究,结果表明,如色度图所示,所发射的光的颜色可以根据激发波长进行调制。观察到某些聚合物发生了从恶二唑到per二酰亚胺生色团的Forster激发能转移现象,其中氧桥似乎是造成这种现象的原因。在溶液中,获得了高达24%的高荧光量子产率,而在固态下,由于聚集而获得了低荧光发射。这些聚(per酰亚胺)可以被认为是用于新型光电子应用(例如,光电子)中的高性能材料的有前途的候选者。化学发光传感器。

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