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Coumarin meets Fluorescein : a Förster Resonance Energy Transfer enhanced Ammonia Gas Sensor

机译:香豆素与Fluorescein相遇:Förster共振能量转移增强氨气传感器

摘要

This study focuses on the development of an optical ammonia gas sensor, the sensing mechanism of which is based on Förster resonance energy transfer (FRET) between coumarin and fluorescein. The dyes were immobilized into an organically modified silicate matrix during polymerizing methyltriethoxysilane with trifluoropropyltrimethoxysilane on a poly(methyl methacrylate) substrate. The resulting dye-doped xerogel films were exposed to different gaseous ammonia concentrations. A logarithmic decrease of the coumarin fluorescence emission band at 442 nm was observed with increasing gaseous ammonia concentrations, which was due to enhanced FRET between coumarin and fluorescein. The coumarin/fluorescein composition was optimized in order to obtain the best ammonia sensitivity. First experiments in a flow cell gas sensor setup demonstrated a sensitive and reversible response to gaseous ammonia.ud
机译:这项研究的重点是光学氨气传感器的开发,其传感机制基于香豆素和荧光素之间的福斯特共振能量转移(FRET)。在将甲基三乙氧基硅烷与三氟丙基三甲氧基硅烷在聚(甲基丙烯酸甲酯)基底上聚合的过程中,将染料固定在有机改性的硅酸盐基质中。将所得的染料掺杂的干凝胶膜暴露于不同的气态氨浓度。随着氨气浓度的增加,观察到了442 nm处香豆素荧光发射带的对数减少,这是由于香豆素和荧光素之间的FRET增强。优化香豆素/荧光素的组成以获得最佳的氨敏感性。流通池气体传感器设置中的第一个实验证明了对气态氨的灵敏且可逆的响应。

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