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Advancing Metal-Organic Frameworks toward Smart Sensing: Enhanced Fluorescence by a Photonic Metal- Organic Framework for Organic Vapor Sensing

机译:向智能感测推进金属有机框架:通过光子金属 - 有机蒸气感应增强荧光

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Polymer-based colloidal crystals are promising materials for the enhancement of fluorescent emissions, however, due to limited porosity, they are not yet readily deployed in chemical vapor sensing. On the contrary, metal-organic frameworks (MOFs) are highly porous with an exceptional ability to detect a wide range of toxic chemicals through fluorescence. Here, it is shown for the first time how enhanced fluorescence of a fluorophore can be achieved by incorporating a fluorescent dye into a template-free periodically structured MOF film. A 200-fold fluorescent intensity amplification is observed when Nile red (NR) dye is adsorbed on zeolitic imidazolate framework-8 (ZIF-8) particles and is then assembled into a colloidal crystal film (NR similar to ccZIF-8) when compared to the disordered film (NR similar to ZIF-8). The NR similar to ccZIF-8 film shows a response to 100 ppm of acetone vapor at room temperature with a detection limit of 60 ppm. The NR similar to ccZIF-8 film shows more than 40 times higher sensitivity to toluene vapor at 770 ppm than NR adsorbed on polystyrene particles forming a colloidal crystal film. From this study, it is expected that MOFs will play a role in the future development of smart sensors for chemical and biomedical applications.
机译:聚合物基胶体晶体是用于增强荧光排放的有希望的材料,然而,由于孔隙率有限,它们尚未容易地部署在化学蒸气传感中。相反,金属有机框架(MOF)高度多孔,具有通过荧光检测各种有毒化学品的特殊能力。这里,首次示出了首次通过将荧光染料掺入无模板周期性的MOF膜来实现荧光团的增强荧光。当尼罗基咪唑酯骨架-8(ZIF-8)颗粒上吸附在沸石上的红色(NR)染料时,观察到200倍的荧光强度扩增,然后与无序膜(类似于ZIF-8的NR)。类似于CCZIF-8膜的NR显示在室温下对100ppm的丙酮蒸汽反应,检测限为60ppm。与CCZIF-8薄膜类似的NR显示比在形成胶体晶体膜的聚苯乙烯颗粒上的770ppm的甲苯蒸汽升高40倍以上。从这项研究开始,预计MOF将在未来发展的化学和生物医学应用的智能传感器的发展中发挥作用。

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