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A novel tetraphenylethene-based fluorescent sensor for uranyl ion detection with aggregation-induced emission character

机译:基于新的四苯基乙烯基荧光传感器,用于聚集诱导的发射特征

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摘要

Facile and efficient approaches for uranyl ion detection without tedious sample pretreatment and sophisticated instrumentation are in great demand in environmental monitoring and mitigation. In this work, a novel fluorescent sensor TPE-BSA with aggregation-induced emission (AIE) character was designed and synthesized for the uranyl ion detection, by incorporating salophen moiety into the AIE-active tetraphenylethene moiety. Fluorescence titrimetric studies revealed that TPE-BSA could detect uranyl ion in a simple way owing to the quenching of its aggregation-induced emission, with the limit of detection as low as 0.039 mu M. According to the results of particle size distribution analysis, H-1 NMR, Job's plot analysis, quantum chemical calculations and fluorescence lifetime measurement, the fluorescence quenching of TPE-BSA upon addition of uranyl ion could be ascribed to the complexation of TPE-BSA and uranyl ion as well as the heavy atom effect of uranyl ion. Furthermore, TPE-BSA was successfully used for the quantification of uranyl ion in drinking water, demonstrating that TPE-BSA has the potential to be employed in the detection of uranyl ion in the environmental system as an AIE-active sensor.
机译:不含繁琐样品预处理和复杂仪器的铀酰离子检测的容易和有效的方法在环境监测和缓解方面都有很大的需求。在这项工作中,通过将助剂部分掺入Aie活性的四苯基乙烯部分,设计并合成了具有聚集诱导的发射(AIE)特征的新型荧光传感器TPE-BSA,并合成铀酰离子检测。荧光滴定性研究表明,由于其聚集诱导的发射的淬火,TPE-BSA可以以简单的方式检测铀酸铀离子,检测限为0.039μm。根据粒度分布分析的结果,H. -1 NMR,作业的绘图分析,量子化学计算和荧光寿命测量,加入铀酰离子后TPE-BSA的荧光猝灭可以归因于TPE-BSA和铀酰离子的络合物以及铀基的重原子作用离子。此外,TPE-BSA已成功地用于饮用水中的铀酰离子的定量,表明TPE-BSA具有在环境系统中检测作为AIE活性传感器中的铀酰离子的可能性。

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