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Optimization of Plasmonic U-Shaped Optical Fiber Sensor for Mercury Ions Detection Using Glucose Capped Silver Nanoparticles

机译:葡萄糖封盖的银纳米粒子检测汞离子的等离子U形光纤传感器的优化

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Heavy metal contamination of water bodies has an adverse effect on human health and the environment even at very low concentrations. In this paper, we report U-shaped fiber optic probe coated with glucose capped silver nanoparticles (AgNPs) for label-free detection of mercury ions in aqueous solution. The reaction between glucose capped AgNPs and mercury ions resulted in a reduction in the plasmonic absorbance. The developed sensor probe was able to detect mercury ions concentration as low as 2 ppb, which is less than the World Health Organization acceptable limit for mercury ions in drinking water. The sensor probes displayed excellent selectivity towards mercury ions over other metal ions. Furthermore, the developed sensor probe was able to detect mercury ions down to 5 ppb in domestic tap water, i.e., selective detection of mercury even in real matrix having high concentration mixtures of various essential ions. The response of AgNPs coated sensor probe was found to be better than glucose capped gold nanoparticles and hollow gold-silver nanostructures coated fiber-optic probes.
机译:即使在非常低的浓度下,水体的重金属污染也会对人体健康和环境造成不利影响。在本文中,我们报告了涂覆有葡萄糖封端的银纳米颗粒(AgNP)的U型光纤探头,用于无标记的水溶液中汞离子检测。葡萄糖封端的AgNP与汞离子之间的反应导致等离子体吸收率降低。开发的传感器探头能够检测到低至2 ppb的汞离子浓度,该浓度低于世界卫生组织对饮用水中汞离子的可接受限值。传感器探针对汞离子的选择性优于其他金属离子。此外,开发的传感器探针能够在家用自来水中检测低至5 ppb的汞离子,即,即使在具有各种必需离子的高浓度混合物的真实基质中,也可以选择性检测汞。发现用AgNPs涂覆的传感器探针的响应要好于用葡萄糖封端的金纳米颗粒和中空的金银纳米结构涂覆的光纤探针。

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