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Esterase-Mediated Highly Fluorescent Gold Nanoclustersand Their Use in Ultrasensitive Detection of Mercury: Synthetic andMechanistic Aspects

机译:酯酶介导的高荧光金纳米簇及其在汞超灵敏检测中的应用:合成和机械方面

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摘要

The fast, accurate, and ultrasensitive detection of toxic mercury in real water samples is still challenging without the use of expensive sophisticated instruments. Herein, highly fluorescent gold nanoclusters (AuNCs) were synthesized using a newer protein templet, esterase (EST). The EST-AuNCs consisted of ∼25 Au atoms in the nanocluster having ∼2 nm size. EST-AuNCs were found to be highly stable in aqueous buffer with a wide range of pH (pH 4–12) and were also stable in powdered form. The fluorescence quantum yield of EST-AuNCs in deionized water was 6.2% which had increased to 7.8% upon the addition of 1 M NaCl (an increase of 23%). The EST-AuNCs selectively sense the toxic Hg2+ ions with higher sensitivity (limit of detection; 0.88 nM) with the linear range 1–30 nM. The test strips for rapid sensing of Hg2+ in real water samples were developed on the polymeric surface. The validation of sensing ability of EST-AuNCs suggested 94–98% recovery with linearity. Moreover, because of the widely reported applications of EST, the developed EST-AuNCscould also be used for another sensing, catalytic, and biomedicalapplications.
机译:在不使用昂贵的精密仪器的情况下,快速,准确和超灵敏的检测真实水样中的有毒汞仍然具有挑战性。本文中,使用新型蛋白质模板酯酶(EST)合成了高荧光金纳米簇(AuNC)。 EST-AuNCs由〜25 nm大小的纳米簇中的〜25个Au原子组成。发现EST-AuNCs在具有宽pH值(pH 4–12)的水性缓冲液中高度稳定,并且在粉末形式中也很稳定。去离子水中EST-AuNCs的荧光量子产率为6.2%,添加1 M NaCl后,荧光量子产率提高到7.8%(增加23%)。 EST-AuNCs在1-30 nM的线性范围内以较高的灵敏度(检测极限; 0.88 nM)选择性地检测有毒的Hg 2 + 离子。在聚合物表面上开发了用于快速检测真实水样中Hg 2 + 的测试条。 EST-AuNCs的感知能力验证表明,线性恢复率可达到94-98%。而且,由于广泛报道了EST的应用,发达的EST-AuNCs也可以用于其他传感,催化和生物医学应用程序。

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