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Selective Discrimination of Toxic Polycyclic Aromatic Hydrocarbons in Water by Targeting pi-Stacking Interactions

机译:通过靶向PI堆叠相互作用选择性辨别水中毒多环芳烃

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摘要

The development of highly sensitive and selective devices for rapid screening of polycyclic aromatic hydrocarbons (PAHs) in water is nowadays a crucial challenge owing to their alarming abundance in the environment and adverse health effects. Herein, inspired by the unique pi-stacking interactions taking place between identical small aromatic molecules, a novel, generic, and straightforward methodology to electrochemically determine and discriminate such pollutants is described. Such a method is focused on covalently anchoring different PAHs on an indium tin oxide electrode surface by means of self-assembled monolayers. The surface-anchored PAHs act as recognition units to selectivity interact with a specific PAH target of the same nature. By tailoring the recognition platform with four different model PAH molecules (naphthalene, anthracene, pyrene, and fluoranthene) and carrying out an electronic tongue approximation, the selective discrimination and quantification of the selected PAHs in aqueous samples at ultralow concentrations were achieved impedimetrically, which were also validated using a certified reference PAH mixture.
机译:现在,在水中快速筛选多环芳烃(PAH)的高敏感和选择性装置的开发是由于其在环境中的惊人丰富和不良健康影响的关键挑战。这里,通过在相同的小芳族分子,新颖,通用和直接方法之间进行的独特的PI堆叠相互作用来描述用于电化学确定和区分这些污染物的独特PI堆叠相互作用。这种方法专注于通过自组装的单层通过自组装的单层共价锚固在氧化铟锡电极表面上的不同PAH。 The surface-anchored PAHs act as recognition units to selectivity interact with a specific PAH target of the same nature.通过用四种不同的型号PAH分子(萘,蒽,芘和氟)来定制识别平台并进行电子舌近似,妨碍超级浓度下的水性样品中所选PAH的选择性辨别和定量,因此还使用经认证的参考PAH混合物进行验证。

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