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Dye-doped inorganic/organic composite films as fluorescence sensors for methanol vapor

机译:染料掺杂的无机/有机复合膜作为甲醇蒸气的荧光传感器

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摘要

The sol-gel method has been employed in the fabrication of mesoporous composite films consisting of a non-ionic surfactant, Pluronic P123, as the organic component, and silica as the inorganic component. The hybrid nature of these films resulted in them having an internal structure consisting of nanometer size self-assembled organic mesostructures surrounded by a silica framework. These films served as the host matrix for the laser dye coumarin 481 (C481), and an energy transfer complex formed between C481 and J-aggregated meso-tetra(4-sulfonatophenyl)porphyrin (TSPP). Upon exposure to methanol vapor, a rapid and reversible decrease in fluorescence intensity occurs for films containing C481 alone, as well as the energy transfer complex. Steady-state and time-resolved spectroscopic studies indicated that the decrease in fluorescence intensity was primarily due to an excited state interaction between methanol and C481. Additionally, morphological changes within the film appear to play a role for films containing the C481/TSPP energy transfer complex.
机译:溶胶-凝胶法已用于制造由非离子表面活性剂,作为有机组分的Pluronic P123和作为无机组分的二氧化硅组成的介孔复合膜。这些膜的混合性质导致它们具有内部结构,该内部结构由被二氧化硅骨架包围的纳米级自组装有机介观结构组成。这些薄膜用作激光染料香豆素481(C481)的主体基质,以及C481和J聚集的介孔四(4-磺酰基苯基)卟啉(TSPP)之间形成的能量转移络合物。暴露于甲醇蒸气后,仅包含C481以及能量转移络合物的薄膜的荧光强度就会迅速而可逆地降低。稳态和时间分辨光谱研究表明,荧光强度的下降主要归因于甲醇和C481之间的激发态相互作用。另外,膜内的形态变化似乎对含有C481 / TSPP能量转移复合物的膜也起作用。

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