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Bimetallic Nanoparticles for Arsenic Detection

机译:用于砷检测的双金属纳米颗粒

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Effective and sensitive monitoring of heavy metal ions, particularly arsenic, in drinking water is very important to risk management of public health. Arsenic is one of the most serious natural pollutants in soil and water in more than 70 countries in the world. The need for very sensitive sensors to detect ultralow amounts of arsenic has attracted great research interest. Here, bimetallic FePt, FeAu, FePd, and AuPt nanoparticles (NPs) are electrochemically deposited on the Si(100) substrate, and their electrochemical properties are studied for As(III) detection. We show that trace amounts of As(III) in neutral pH could be determined by using anodic stripping voltammetry. The synergistic effect of alloying with Fe leads to better performance for Fe-noble metal NPs (Au, Pt, and Pd) than pristine noble metal NPs (without Fe alloying). Limit of detection and linear range are obtained for FePt, FeAu, and FePd NPs. The best performance is found for FePt NPs with a limit of detection of 0.8 ppb and a sensitivity of 0.42 mu A ppb(-1). The selectivity of the sensor has also been tested in the presence of a large amount of Cu(II), as the most detrimental interferer ion for As detection. The bimetallic NPs therefore promise to be an effective, high-performance electrochemical sensor for the detection of ultratrace quantities of arsenic.
机译:有效和敏感地监测饮用水中的重金属离子,尤其是砷,对公共卫生风险管理非常重要。砷是世界上70多个国家/地区土壤和水中最严重的自然污染物之一。需要非常灵敏的传感器来检测超低含量的砷,引起了极大的研究兴趣。在这里,双金属FePt,FeAu,FePd和AuPt纳米颗粒(NPs)电化学沉积在Si(100)衬底上,并研究了它们的电化学性质以检测As(III)。我们表明,可以通过使用阳极溶出伏安法测定中性pH中的痕量As(III)。与原始合金贵金属NP(不进行Fe合金化)相比,与Fe合金化的协同效应可提高Fe贵金属NP(Au,Pt和Pd)的性能。获得FePt,FeAu和FePd NP的检出限和线性范围。发现FePt NP的最佳性能,检出限为0.8 ppb,灵敏度为0.42μA ppb(-1)。传感器的选择性也已经在大量Cu(II)的存在下进行了测试,这是As检测中最有害的干扰离子。因此,双金属NP有望成为一种高效,高性能的电化学传感器,用于检测超痕量的砷。

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