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A quantum dot-based dual fluorescent probe for recognition of mercuric ions and N-acetylcysteine: “On–Off–On” approach

机译:基于量子点的双荧光探针,用于识别汞离子和N-乙酰半胱氨酸:“开-关-开”方法

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A mercaptopropionic acid-capped cadmium sulfide quantum dot (MPA-CdS QD) based dual fluorescent a€?Ona€“Offa€“Ona€? probe was designed and applied for sensitive and selective monitoring of mercuric ions (Hg2+) and N-acetylcysteine (NAC) in aqueous solution. In the mercuric ion detection, the fluorescence of MPA-CdS QDs decreased with increasing amount of Hg2+. This is because of the binding of mercuric ions to mercaptopropionic on the surface of quantum dots and the electron transfer from the photoexcited MPA-CdS QDs to mercuric ions. Subsequently, upon the successive addition of NAC, the fluorescence of MPA-CdS QDs is recovered due to the high binding affinity of NAC with mercuric ions; NAC can form a more stable complex with mercuric ions in aqueous solution, and this releases the fluorescent MPA-CdS QDs. The strategy was simply achieved by measuring the changes in the fluorescence intensity of QDs. The present results suggest that the developed method has several advantages such as being simple, straightforward, and highly sensitive, ease of operation and cost effectiveness and is used for simultaneous determination of two analytes in aqueous media. The linear response range was obtained over the range of 25a€“225 ng mLa?’1 and 0.05a€“0.9 ??g mLa?’1 with a low detection limit of 25.2 ng mLa?’1 and 0.092 ??g mLa?’1 for Hg2+ ions and NAC, respectively. The developed probe was successfully applied for the determination of Hg2+ and NAC in real samples with satisfactory results.
机译:基于巯基丙酸的硫化镉量子点(MPA-CdS QD)双荧光探针。该探针被设计并用于灵敏和选择性地监测水溶液中的汞离子(Hg2 +)和N-乙酰半胱氨酸(NAC)。在汞离子检测中,MPA-CdS QD的荧光随Hg2 +含量的增加而降低。这是因为汞离子与量子点表面的巯基丙酸结合,并且电子从光激发的MPA-CdS QD转移到汞离子。随后,在连续加入NAC后,由于NAC与汞离子的高结合亲和力,MPA-CdS QDs的荧光得以恢复。 NAC可以与水溶液中的汞离子形成更稳定的络合物,从而释放出荧光MPA-CdS QD。通过测量QDs荧光强度的变化即可简单地实现该策略。目前的结果表明,所开发的方法具有简单,直接,高度灵敏,易于操作和成本效益等优点,可用于同时测定水性介质中的两种分析物。线性响应范围是在25a≤225 ng mLa?1和0.05a≤0.9?g mLa?1的范围内获得的,检出限低至25.2 ng mLa?1和0.092?g mLa。 Hg2 +离子和NAC分别为?'1。研制成功的探针已成功用于实际样品中Hg2 +和NAC的测定,结果令人满意。

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