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Supersensitive Detection of Chlorinated Phenols by Multiple Amplification Electrochemiluminescence Sensing Based on Carbon Quantum Dots/Graphene

机译:基于碳量子点/石墨烯的多重放大电化学发光传感超灵敏检测氯代苯酚

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摘要

A novel electrochemiluminescence (ECL) sensor based on carbon quantum dots (CQDs) immobilized on graphene (GR) has been first developed for the determination of chlorinated phenols (CPs) in water. The detection is based on the ECL signals from the interaction between the analytes and the excited CQDs (C~(*+)) using S_2O_8~(2-) as coreactant. GR facilitates both C~(·-) and SO_4~(·-) production, resulting in a high yield of C~(*+), and the multistage amplification effect leads to a nearly 48-fold ECL amplification. Pentachlorophenol (PCP) is often monitored as an important indicator for CPs in real environmental samples, but its ultratrace and real-time analysis is an intractable issue in environmental monitoring. The resulting ECL sensor enables the real-time detection of PCP with unprecedented sensitivity reaching 1.0 × 10~(-12) M concentration in a wide linear range from 1.0 × 10~(-12) to 1.0 × 10~(-8) M. The ECL sensor showed high selectivity to CPs, especially to PCP. The practicability of the sensing platform in real water samples showed ideal recovery rates. It is envisaged that the eco-friendly and recyclable sensor could be employed in the identification of key CPs in the environment.
机译:首次开发了一种基于固定在石墨烯(GR)上的碳量子点(CQDs)的新型电化学发光(ECL)传感器,用于测定水中的氯化酚(CPs)。该检测基于以S_2O_8〜(2-)为共反应物的分析物与激发的CQD(C〜(* +))之间相互作用的ECL信号。 GR促进C〜(·-)和SO_4〜(·-)的生产,导致C〜(* +)的高产率,并且多级扩增效应导致ECL扩增近48倍。五氯苯酚(PCP)通常被监测为实际环境样品中CP的重要指标,但其超痕量和实时分析是环境监测中的棘手问题。最终的ECL传感器能够以1.0×10〜(-12)到1.0×10〜(-8)M的宽线性范围实时检测PCP,前所未有的灵敏度达到1.0×10〜(-12)M浓度。 ECL传感器对CP表现出很高的选择性,尤其是对PCP。该传感平台在实际水样中的实用性显示出理想的回收率。设想可以使用环保和可回收的传感器来识别环境中的关键CP。

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