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A chloride-anion insensitive colorimetric chemosensor for trinitrobenzene and picric acid

机译:三氯苯和苦味酸的氯阴离子不敏感比色化学传感器

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摘要

A new receptor, the bisTTF-calix[2]thiophene[2]pyrrole derivative 3, has been prepared from the Lewis acid-catalyzed condensation of 2,5-bis(1-hydroxymethylethyl)thiopheno-TTF and pyrrole. This new system is found to form complexes with the electron-deficient guests, trinitrobenzene (TNB) and picric acid (PA), which serve as models for nitroaromatic explosives. The binding phenomenon, which has been studied in organic solution using proton nuclear magnetic resonance and absorption spectroscopies, results in an easy-to-visualize color change in chloroform that is independent of the presence of chloride anion, a known interferant for an earlier tetrakisTTF-calix[4]pyrrole TNB chemosensor. Support for the proposed binding mode comes from a preliminary solid state structure of the complex formed from TNB, namely TNB?3. A color change is also observed when dichloromethane solutions of chemosensor 3 are added to solvent-free samples of TNB, PA, and 2,4,6-trinitrotoluene supported on silica gel.
机译:一种新的受体,bisTTF-杯[2]噻吩[2]吡咯衍生物3,是由路易斯酸催化的2,5-双(1-羟甲基乙基)噻吩-TTF和吡咯的缩合制备的。发现该新系统与缺电子的客体三硝基苯(TNB)和苦味酸(PA)形成配合物,后者是硝基芳族炸药的模型。结合现象已在有机溶液中使用质子核磁共振和吸收光谱法进行了研究,结果导致氯仿中的颜色变化易于观察,而与氯离子的存在无关,氯离子是较早的tetrakisTTF-的已知干扰物。杯[4]吡咯TNB化学传感器。对所提出的结合模式的支持来自于由TNB形成的复合物的初步固态结构,即TNB 3。当将化学传感器3的二氯甲烷溶液添加到无溶剂的TNB,PA和负载在硅胶上的2,4,6-三硝基甲苯样品中时,也会观察到颜色变化。

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