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An efficient protocol to use iron oxide nanoparticles in microfluidic paper device for arsenic detection

机译:在微流纸装置中使用氧化铁纳米颗粒进行砷检测的有效方案

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This method describes a rapid ecofriendly and affordable method for detecting arsenic in the water sample. The system designed works on the principle that involves generation of arsine due to reduction of arsenic by bare and cysteine capped iron oxide nanoparticles and its further reaction with silver nitrate present on the microfluidic paper analytical device (μPAD). Change in the color of μPAD from colorless to reddish brown is a result of reaction between arsine gas and silver nitrate, and is the detection criteria. The sample solution of arsenic was prepared in lemon juice to provide the required acidic environment for hydride generation. This proposed method has detection limit of 0.01?ppm (10?ppb) and 1?ppm for cysteine capped and bare iron oxide nanoparticles respectively. This is for the first time that iron oxide nanoparticles are being used for detection and reduction arsenic species in environmental sample. The same device can be used for on-site detection in an ecofriendly manner.
机译:该方法描述了一种快速环保且价格合理的方法,用于检测水样中的砷。设计的系统基于以下原理工作:由于裸露和半胱氨酸覆盖的氧化铁纳米颗粒还原了砷而生成了ine,并且其与微流纸分析设备(μPAD)上存在的硝酸银进一步反应。 μPAD的颜色从无色变为红棕色是a气与硝酸银之间反应的结果,是检测标准。在柠檬汁中制备砷的样品溶液,以提供生成氢化物所需的酸性环境。该方法对半胱氨酸封端的和裸露的氧化铁纳米粒子的检出限分别为0.01?ppm(10?ppb)和1?ppm。这是首次将氧化铁纳米颗粒用于检测和还原环境样品中的砷物质。同一设备可以以环保的方式用于现场检测。

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