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Enhanced Luminescence from Emissive Defects in Aggregated Conjugated Polymers

机译:聚集共轭聚合物中发射缺陷引起的增强发光

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摘要

Degradation experiments and model studies suggested that the longer lived green fluorescence from an aggregated poly(p-phenylene ethynylene) (PPE) was due to the presence of highly emissive, low-energy, anthryl defect sites rather than the emissive conjugated polymer excimers proposed in a previous report. After elucidating the origin of the green fluorescence, additional anthryl units were purposely incorporated into the polymer to enhance the blue-to-green fluorescence color change that accompanied polymer aggregation. The improved color contrast from this anthryl-doped conjugated polymer led to the development of crude solution-state and solid-state sensors, which, upon exposure to water, exhibited a visually noticeable blue-to-green fluorescence color change.
机译:降解实验和模型研究表明,聚集的聚对苯撑乙炔(PPE)的绿色荧光寿命更长,这是由于存在高发射,低能量的蒽缺陷位点,而不是因为提出了发射共轭聚合物受激准分子以前的报告。在阐明绿色荧光的起源之后,将另外的蒽基单元故意掺入到聚合物中,以增强伴随聚合物聚集的蓝绿色荧光颜色变化。这种由蒽基掺杂的共轭聚合物产生的改善的颜色对比度导致了粗溶液状态和固态传感器的发展,它们在暴露于水后呈现出可见的蓝绿色荧光颜色变化。

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