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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Automated portable analyzer for lead(II) based on sequential flow injection and nanostructured electrochemical sensors
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Automated portable analyzer for lead(II) based on sequential flow injection and nanostructured electrochemical sensors

机译:基于顺序流动注射和纳米结构电化学传感器的自动便携式铅(II)分析仪

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A fully automated portable analyzer for toxic metal ion detection based on a combination of a nanostructured electrochemical sensor and a sequential flow injection system has been developed in this work. The sensor was fabricated from a carbon paste electrode modified with acetamide phosphonic acid self-assembled monolayer on mesoporous silica (Ac-Phos SAMMS) which was embedded in a very small wall-jet (flow-onto) electrochemical cell. The electrode is solid-state and mercury-free. Samples and reagents were injected into the system and flowed through the electrochemical cell by a user programmable sequential flow technique which required minimal volume of samples and reagents and allowed the automation of the analyzer operation. The portable analyzer was evaluated for lead (Pb) detection due to the excellent binding affinity between Pb and the functional groups of Ac-Phos SAMMS as well as the great concern for Pb toxicity. Linear calibration curve was obtained in a low concentration range (1-25 ppb of Pb(11)). The reproducibility was excellent; the percent relative standard deviation was 2.5 for seven consecutive measurements of 10 ppb of Pb(II) solution. Excess concentrations of Ca, Ni, Co, Zn, and Mn ions in the solutions did not interfere with detection of Pb, due to the specificity and the large number of the functional groups on the electrode surface. The electrode was reliable for at least 90 measurements over 5 days. This work is an important milestone in the development of the next-generation metal ion analyzers that are portable, fully automated, and remotely controllable. (c) 2005 Elsevier B.V. All rights reserved.
机译:在这项工作中,已经开发了一种基于纳米结构电化学传感器和顺序流动注射系统的全自动便携式有毒金属离子分析仪。该传感器由碳糊电极制成,该碳糊电极用介孔二氧化硅(Ac-Phos SAMMS)上的乙酰胺膦酸自组装单层修饰,该碳糊电极嵌入非常小的壁喷式(流通式)电化学电池中。电极为固态且不含汞。样品和试剂被注入到系统中,并通过用户可编程的顺序流动技术流经电化学池,该技术需要最小体积的样品和试剂,并允许分析仪操作的自动化。由于Pb与Ac-Phos SAMMS的官能团之间的优异结合亲和力以及对Pb毒性的高度关注,因此对便携式分析仪进行了铅(Pb)检测评估。在低浓度范围(Pb(11)的1-25 ppb)下获得线性校准曲线。重现性极佳;连续七次测量10 ppb的Pb(II)溶液的相对标准偏差百分比为2.5。由于电极表面的特异性和大量的官能团,溶液中Ca,Ni,Co,Zn和Mn离子的浓度过高不会干扰Pb的检测。电极在5天内至少进行90次测量是可靠的。这项工作是便携式,全自动,可远程控制的下一代金属离子分析仪开发的重要里程碑。 (c)2005 Elsevier B.V.保留所有权利。

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