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Label-free fluorescence detection of mercury ions based on the regulation of the Ag autocatalytic reaction

机译:基于Ag自催化反应调控的无标记荧光检测汞离子

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摘要

In this work, a novel facile nanoparticle autocatalytic sensor based on the inhibition of the Ag autocatalytic reaction for the determination of Hg2+ was developed. o-Phenylenediamine (OPD) tended to be oxidized into 2,3-diaminophenazine (OPDox) by silver ions (Ag+) followed by the formation of silver nanoparticles (AgNPs). Employed as a catalyst, the thus-formed AgNPs would further promote the reaction between OPD and Ag+. When Hg2+ was introduced, Hg2+ adsorbed on the surface of the AgNPs, thus inhibiting the oxidation process mentioned above and achieving weakened fluorescence intensity. A linear relationship between fluorescence intensity and Hg2+ concentration (within the range from 10 nM to 2500 nM) was obtained and the detection limit reached as low as 8.2 nM. The proposed method was also applied for the determination of Hg2+ in real water samples with satisfactory results. The protocol showed excellent advantages of sensitivity and selectivity for Hg2+ over various metal ions and anions. Meanwhile, this method was simpler and more cost-effective compared with many reported nanomaterial- and DNA-based approaches. Furthermore, an "INHIBIT" logic gate based on the Ag+-Hg2+-OPD system has also been designed.
机译:在这项工作中,开发了一种新型的基于抑制Ag自催化反应测定Hg2 +的纳米颗粒自催化传感器。邻苯二甲胺(OPD)倾向于被银离子(Ag +)氧化为2,3-二氨基吩嗪(OPDox),然后形成银纳米颗粒(AgNPs)。用作催化剂,由此形成的AgNP将进一步促进OPD与Ag +之间的反应。当引入Hg 2+时,Hg 2+吸附在AgNPs的表面上,从而抑制了上述的氧化过程并减弱了荧光强度。获得了荧光强度和Hg2 +浓度(在10 nM至2500 nM范围内)之间的线性关系,并且检测限低至8.2 nM。该方法还用于实际水样中Hg2 +的测定,结果令人满意。该协议显示出对Hg2 +的敏感性和选择性优于各种金属离子和阴离子的出色优势。同时,与许多报道的基于纳米材料和DNA的方法相比,该方法更简单且更具成本效益。此外,还设计了基于Ag + -Hg2 + -OPD系统的“禁止”逻辑门。

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