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A Novel Mechanism for Chemical Sensing Based on Solvent Fluorophore Substrate Interaction: Highly Selective Alcohol and Water Sensor with Large Fluorescence Signal Contrast

机译:基于溶剂荧光团与底物相互作用的化学传感新机制:具有大荧光信号对比度的高选择性酒精和水传感器

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Differentiation of solvents having similar physicochemical properties, such as ethanol and methanol, is an important issue of interest. However, without performing chemical analyses, discrimination between methanol and ethanol is highly challenging due to their similarity in chemical structure as well as properties. Here, we present a novel type of alcohol and water sensor based on the subtle differences in interaction among solvent analytes, fluorescent organic molecules, and a mesoporous 'silica gel substrate. A gradual change in the chemical structure of the fluorescent diketopyrrolopyrrole (DPP) derivatives alters their interaction with the substrate and solvent analyte, which creates a distinct intermolecular aggregation of 'the DPP derivatives on the silica gel substrate depending on the solvent environment and produces a change in the fluorescence color and intensity as a sensory signal. The devised sensor device, which is fabricated with simple drop-casting of the DPP derivative solutions onto a silica gel substrate, exhibited a completely reversible fluorescence signal change with large fluorescence signal contrast, which allows selective solvent detection by simple optical observation with the naked eye under UV light. Superior selectivity of the alcohol and water sensor system, which can clearly distinguish among ethanol, methanol,- ethylene glycol, and' water, is demonstrated.
机译:具有相似物理化学特性的溶剂(例如乙醇和甲醇)的区别是一个重要的重要问题。但是,如果不进行化学分析,则由于甲醇和乙醇在化学结构和性质上的相似性,因此区分它们具有很高的挑战性。在这里,我们根据溶剂分析物,荧光有机分子和中孔硅胶基质之间相互作用的细微差异,提出了一种新型的酒精和水传感器。荧光二酮吡咯并吡咯(DPP)衍生物的化学结构的逐渐变化会改变它们与底物和溶剂分析物的相互作用,这会根据溶剂环境在硅胶底物上产生明显的分子间DPP分子间聚集,并产生变化。在荧光的颜色和强度上作为感觉信号。通过简单地将DPP衍生物溶液滴铸到硅胶基板上而制成的设计的传感器设备显示出完全可逆的荧光信号变化以及较大的荧光信号对比度,从而可以通过肉眼进行简单的光学观察来进行选择性溶剂检测在紫外线下。酒精和水传感器系统具有出色的选择性,可以清楚地区分乙醇,甲醇,乙二醇和水。

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