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Highly sensitive ratiometric quantification of cyanide in water with gold nanoparticles via Resonance Rayleigh Scattering

机译:共振瑞利散射法与金纳米颗粒高灵敏度比例定量分析水中的氰化物

摘要

A highly sensitive and selective ratiometric sensor for the quantification of cyanide (CN) in aqueous samples has been developed using spherical gold nanoparticles (AuNPs) stabilized by polysorbate 40 (PS-40). Three different AuNP sizes (14, 40 and 80 nm mean diameters) were used to evaluate the response of the sensor using both colorimetric and Resonance Rayleigh Scattering (RRS) detection schemes. The best results were obtained for the sensor using 40 nm AuNPs, for which the limits of detection (LODs) were found to be 100 nmol L in a benchtop instrument and 500 nmol L by the naked eye, values well below the maximum acceptable level for drinking water (1.9 µmol L) set by the World Health Organization (WHO). The practical use of the 40 nm-AuNPs RRS sensor was demonstrated with the determination of CN in drinking and fresh waters. Finally, the sensor was successfully implemented in a compact portable device consisting of two light-emitting diodes (LEDs) and a miniature spectrometer, turning this sensor into a very potent tool for its application as a quick routine field-deployable analytical method.
机译:使用由聚山梨酯40(PS-40)稳定的球形金纳米颗粒(AuNPs),已经开发出了一种用于定量测定水性样品中氰化物(CN)的高灵敏度和选择性比率传感器。使用比色法和共振瑞利散射(RRS)检测方案,使用三种不同的AuNP尺寸(平均直径分别为14、40和80 nm)来评估传感器的响应。使用40 nm AuNP的传感器获得了最佳结果,在台式仪器中发现的检出限(LOD)为100 nmol L,肉眼发现为500 nmol L,其值远低于最大可接受水平世界卫生组织(WHO)设定的饮用水(1.9 µmol L)。测定饮用水和淡水中的CN证明了40 nm-AuNPs RRS传感器的实际使用。最终,该传感器成功地安装在由两个发光二极管(LED)和一个微型光谱仪组成的紧凑型便携式设备中,使该传感器成为一种非常有效的工具,可作为一种常规的现场可部署的分析方法进行应用。

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