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首页> 外文期刊>Electroanalysis >A New Sensor with Increased Lifetime Based on a Mixed Diazonium Thick Film/Gold Nanoparticles Interface for Hg(II) Trace Detection
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A New Sensor with Increased Lifetime Based on a Mixed Diazonium Thick Film/Gold Nanoparticles Interface for Hg(II) Trace Detection

机译:一种新的传感器,具有增加的基于混合重氮厚膜/金纳米颗粒界面的寿命增加,用于HG(II)痕量检测

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摘要

This work describes a novel strategy for surface functionalization, the aim of which is to significantly increase the lifetime of an electrochemical sensor dedicated to Hg(II) trace determination. In order to tailor stable mixed organic/inorganic interfaces, gold nanoparticles were electrodeposited onto a glassy carbon electrode previously functionalized by a thick 4-thiophenol diazonium film, which affords a good anchoring to the nanoparticles. AFM and FEG-SEM were used to characterize the film thickness and the nanoparticles average size and density, respectively. By using square wave anodic stripping voltammetry, the sensor exhibited a linear response between 1 and 10 nM Hg(II) and a normalized sensitivity 0.03 mu A nM(-1) min(-1). Compared to previous works, the storage lifetime of the interface was at least three times longer, being more than three weeks.
机译:这项工作描述了一种用于表面官能化的新策略,其目的是显着增加专用于HG(II)痕量测定的电化学传感器的寿命。 为了定制稳定的混合有机/无机界面,将金纳米颗粒电沉积到预先通过厚的4-噻吩重氮膜官能化的玻碳电极上,这提供良好的锚固纳米颗粒。 AFM和FEG-SEM分别用于分别表征膜厚度和纳米颗粒的平均尺寸和密度。 通过使用方波阳极汽提伏安法,传感器在1至10nm Hg(II)之间具有线性响应,并且归一化灵敏度0.03μm(-1)min(-1)。 与以前的作品相比,界面的存储寿命至少三倍长,超过三周。

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