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Vapochromic behavior of polycarbonate films doped with a luminescent molecular rotor

机译:掺杂有发光分子转子的聚碳酸酯薄膜的气相致变色行为

摘要

We report on vapochromic films suitable for detecting volatile organic compounds (VOCs), based on polycarbonate (PC) doped with 4-(triphenylamino)phthalonitrile (TPAP), a fluorescent molecular rotor sensitive to solvent polarity and viscosity. PC films of variable thickness (from 20 up to 80μm) and containing small amounts of TPAP (0.05wt%) were prepared and exposed to a saturated atmosphere of different VOCs. TPAP/PC films showed a gradual decrease and red-shift of the emission during the exposure to solvents with high polarity index and favorable interaction with the polymer matrix such as THF, CHCl3, and acetonitrile. In the case of the most interacting solvents (THF and CHCl3), TPAP/PC films also showed a fluorescence increase at longer exposure times, as a consequence of an irreversible, solvent-induced crystallization process of the polymeric matrix. The vapochromism of TPAP/PC films is rationalized on the basis of alterations of the rotor intramolecular motion upon solvent uptake by PC and polarity effects of the microenvironment. Interestingly, the fluorescence response of the TPAP/PC films shows a non-trivial, tuneable dependence on film thickness during the second solvent-exposure stage. The latter effect is attributed to a variable extent of the crystallization process occurring in the PC films. This observation promptly suggests, in turn, an effective procedure to modulate the spectroscopic response in such functionalized polymeric materials through the precise control of the film thickness.
机译:我们基于适合于检测挥发性有机化合物(VOCs)的气相致变色膜进行了报道,该膜基于掺有4-(三苯基氨基)邻苯二甲腈(TPAP),对溶剂极性和粘度敏感的荧光分子转子的聚碳酸酯(PC)。制备了厚度可变(从20到80μm)并包含少量TPAP(0.05wt%)的PC膜,并将其暴露于不同VOC的饱和气氛中。 TPAP / PC膜在暴露于极性指数高且与聚合物基质(例如THF,CHCl3和乙腈)具有良好相互作用的溶剂期间,显示出发射的逐渐减少和红移。在相互作用最强的溶剂(THF和CHCl3)的情况下,由于不可逆的,溶剂诱导的聚合物基体结晶过程,TPAP / PC膜在较长的曝光时间也显示出荧光增强。 TPAP / PC膜的气相致变色是根据PC吸收溶剂时转子分子内运动的变化和微环境的极性影响而合理化的。有趣的是,TPAP / PC薄膜的荧光响应在第二溶剂暴露阶段对薄膜厚度显示出不平凡的可调节依赖性。后一种效应归因于在PC膜中发生的不同程度的结晶过程。该观察结果迅速提示了通过精确控制膜厚度来调节这种官能化聚合物材料中光谱响应的有效方法。

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