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Preparation of Luminescent Metal-Organic Framework Films by Soft-Imprinting for 24-Dinitrotoluene Sensing

机译:软压印技术制备24-二硝基甲苯的发光金属有机骨架膜

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摘要

A novel technique for the creation of metal-organic framework (MOF) films based on soft-imprinting and their use as gas sensors was developed. The microporous MOF material [Zn2(bpdc)2(bpee)] (bpdc = 4,4′-biphenyldicarboxylate; bpee = 1,2-bipyridylethene) was synthesized solvothermally and activated by removing the occluded solvent molecules from its inner channels. MOF particles were characterized by powder X-ray diffraction and fluorescence spectroscopy, showing high crystallinity and intense photoluminescence. Scanning electron microscope images revealed that MOF crystals were mainly in the form of microneedles with a high surface-to-volume ratio, which together with the high porosity of the material enhances its interaction with gas molecules. MOF crystals were soft-imprinted into cellulose acetate (CA) films on quartz at different pressures. Atomic force microscope images of soft-imprinted films showed that MOF crystals were partially embedded into the CA. With this procedure, mechanically stable films were created, with crystals protruding from the CA surface and therefore available for incoming gas molecules. The sensing properties of the films were assessed by exposing them to saturated atmospheres of 2,4-dinitrotoluene, which resulted in a substantial quenching of the fluorescence after few seconds. The soft-imprinted MOF films on CA/quartz exhibit good sensing capabilities for the detection of nitroaromatics, which was attributed to the MOF sensitivity and to the novel and more efficient film processing method based on soft-imprinting.
机译:开发了一种基于软压印技术创建金属有机骨架(MOF)膜的新技术,并将其用作气体传感器。溶剂热合成微孔MOF材料[Zn2(bpdc)2(bpee)](bpdc = 4,4'-联苯二羧酸酯; bpee = 1,2-联吡啶乙烯),并通过从其内部通道中除去封闭的溶剂分子进行活化。 MOF颗粒通过粉末X射线衍射和荧光光谱法表征,显示出高结晶度和强烈的光致发光。扫描电子显微镜图像显示,MOF晶体主要为具有高表面体积比的微针形式,这与材料的高孔隙率一起增强了其与气体分子的相互作用。将MOF晶体在不同压力下软压印到石英上的醋酸纤维素(CA)膜中。软压印膜的原子力显微镜图像显示,MOF晶体部分嵌入了CA中。通过此程序,可以形成机械稳定的膜,晶体从CA表面突出,因此可用于进入的气体分子。通过将膜暴露于2,4-二硝基甲苯的饱和气氛中来评估膜的感测性能,这导致几秒钟后荧光的显着猝灭。 CA /石英上的软压印MOF膜对硝基芳香族化合物的检测具有良好的感测能力,这归因于MOF灵敏度和基于软压印的新颖且更有效的膜处理方法。

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