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首页> 外文期刊>Sensors and Actuators, A. Physical >Humidity sensing mechanism based on the distance dependent interactions between BODIPY dye molecules and gold thin films
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Humidity sensing mechanism based on the distance dependent interactions between BODIPY dye molecules and gold thin films

机译:基于BODIPY染料分子与金薄膜之间距离相关相互作用的湿度感应机制

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Radiative decay rate of the Boradiazaindacene (BODIPY) dye molecules in the presence of a gold thin film is analyzed using a conventional time correlated single photon counting technique. The metal thin film and the spacer thickness effects on the fluorescence lifetime of BODIPY molecules are investigated. When the thickness of the gold layer is reduced, the reflectivity of the thin. film decreases; thus, the emission field penetrates the gold and this causes further quenching. As compared to free BODIPY dye molecules, time-resolved experiments show that the fluorescence lifetime of BODIPY which is brought into the proximity of the metal surface exhibit an oscillatory behavior as a function of the thickness spacer between fluorescent dye and the metal surface. This interference effect is employed to build a humidity sensor based on time resolved fluorescence lifetime measurements using a relative humidity sensitive polyethylene glycol (PEG) polymer coating as a spacer material. The swelling characteristic of PEG coating provides nanometer accuracy to control the emitter metal surface distance. Humidity induced change in the thickness of the PEG coating is investigated for a range from 13 to 87% using a single wavelength ellipsometry. It is envisaged that humidity induced changes in the fluorescence lifetime of the dye molecules represent a clear example of the Drexhage interference model. (C) 2015 Elsevier B.V. All rights reserved.
机译:使用常规的时间相关单光子计数技术分析了在金薄膜存在下的硼氮杂吲哚(BODIPY)染料分子的辐射衰减率。研究了金属薄膜和隔离层厚度对BODIPY分子荧光寿命的影响。当金层的厚度减小时,其反射率变薄。电影减少;因此,发射场穿透了金,这导致了进一步的淬灭。与游离的BODIPY染料分子相比,时间分辨实验表明,进入金属表面附近的BODIPY的荧光寿命表现出振荡行为,该行为是荧光染料和金属表面之间的厚度间隔物的函数。基于时间分辨的荧光寿命测量,使用相对湿度敏感的聚乙二醇(PEG)聚合物涂层作为间隔材料,可以利用这种干扰效应来构建湿度传感器。 PEG涂层的溶胀特性可提供纳米级精度,以控制发射极金属表面距离。使用单波长椭圆光度法研究了湿度引起的PEG涂层厚度变化,变化范围为13%至87%。可以设想,湿度引起的染料分子的荧光寿命变化代表了Drexhage干扰模型的一个明显例子。 (C)2015 Elsevier B.V.保留所有权利。

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