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Covalent anchoring of multifunctionized gold nanoparticles on electrodes towards an electrochemical sensor for the detection of cadmium ions

机译:多功能金纳米粒子在电极上向电化学传感器的共价锚定,用于检测镉离子

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摘要

This paper reports an electrochemical sensor based on the covalent anchoring of aryldiazonium salt modified AuNPs to gold electrodes for the sensitive detection of cadmium ions (Cd2+). AuNPs modified with 4-nitrophenyl and 4-carboxylphenyl were first prepared, which were then immobilized in situ on gold electrodes to achieve Au-Ph-AuNP modified interfaces. Glutathione (GSH) was finally modified to Au-Ph-AuNP by amide bonding to achieve an Au-Ph-AuNP-GSH sensing interface, which was used to detect Cd2+ over the concentration range from 0.1 nM to 100 nM with a detection limit of 0.1 nM. This electrochemical sensor demonstrated high stability and sensitivity to Cd2+. It has potential use in an in situ anchoring AuNP strategy to fabricate portable devices for the onsite monitoring of trace amounts of heavy metals.
机译:本文报道了一种基于芳基重氮盐修饰的AuNPs与金电极共价锚定的电化学传感器,用于灵敏地检测镉离子(Cd2 +)。首先制备用4-硝基苯基和4-羧基苯基修饰的AuNP,然后将它们原位固定在金电极上,以获得Au-Ph-AuNP修饰的界面。谷胱甘肽(GSH)最终通过酰胺键修饰为Au-Ph-AuNP,以实现Au-Ph-AuNP-GSH传感界面,该界面用于检测0.1nM至100nM浓度范围内的Cd2 +,检测极限为0.1 nM。该电化学传感器显示出高的稳定性和对Cd2 +的敏感性。它在原位锚定AuNP策略中具有潜在用途,可用于制造用于现场监测痕量重金属的便携式设备。

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