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An ultrasensitive and selective turn-off fluorescent nanoprobe for the detection of copper ions

机译:用于检测铜离子的超灵敏且选择性关闭的荧光纳米探针

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摘要

In this study, a novel approach for sensitive and extremely selective detection of copper ions has been developed based on fluorescence resonance energy transfer (FRET) between AuNPs as an acceptor and fluorescein isothiocyanate (FITC) as a donor. Initially, the fluorescence of the FITC molecule turns-off due to adsorption to the AuNPs surface. However, the fluorescence of the FITCa€“AuNPs system was switched to turn-on by adding D-Pencillamine (D-PC) to the solution mixtures as FITC molecules are released upon displacement by D-PC on the NPs surface. The higher affinity of D-PC toward the surface of AuNPs was further evidenced by controlling the fluorescence intensity enhancement of the released FITC in the presence of copper ions. In this scenario, the chelating agent of the D-PC strongly interacts with copper ions, thereby becoming less competitive for adsorption to the AuNPs surface. This methodology was implemented for the determination of copper ions, where under the optimum experimental conditions (pH 8, [FITC] = 1.0 ??M, [D-PC] = 6.25 ??M), two linear calibration curves were obtained within the range of 1a€“9 nM and 10a€“40 nM with a detection limit of 0.3 nM. Ultimately, the designed nanoprobe was successfully employed for the detection of copper ions in food and water samples.
机译:在这项研究中,基于AuNPs作为受体和异硫氰酸荧光素(FITC)之间的荧光共振能量转移(FRET),开发了一种灵敏且选择性极强的铜离子检测新方法。最初,FITC分子的荧光因吸附到AuNPs表面而关闭。但是,通过在溶液混合物中添加D-Pencillamine(D-PC),将FITCa-AuNPs系统的荧光切换为打开状态,因为FITC分子在D-PC置换后在NPs表面释放时会释放FITC分子。通过在铜离子存在下控制释放的FITC的荧光强度增强,进一步证明了D-PC对AuNPs表面的更高亲和力。在这种情况下,D-PC的螯合剂与铜离子强烈相互作用,从而使吸附到AuNPs表面的竞争性降低。该方法用于测定铜离子,在最佳实验条件下(pH 8,[FITC] = 1.0ΔM,[D-PC] = 6.25ΔM),在该条件下获得了两条线性校准曲线。检出限为0.3 nM,范围为1a“ 9 nM和10a” 40 nM。最终,设计的纳米探针成功用于食品和水样中铜离子的检测。

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