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Comparison of backing materials of screen printed electrochemical sensors for direct determination of the sub-nanomolar concentration of lead in seawater

机译:筛网印刷电化学传感器背衬材料的比较直接测定海水铅铅亚烃浓度

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摘要

An anodic stripping voltammetric method is reported in this study for the determination of sub-nanomolar Pb concentration using disposable sensors, each consisting of three (counter, working and reference) screen-printed electrodes. Sensor performance was optimized for the determination of Pb through several surface modifications, by using single-walled carbon nanotubes, electro-reduced graphene oxide and gold nanoparticles. A scanning electron microscopy study of the deposition of electrogenerated gold nanoparticles of various sizes on the working electrode surface showed that spherical nanoparticles of around 100 nm provided the best results. The modification of working electrodes with graphene and gold nanoparticles permitted the determination of Pb2+ in seawater (Detection Limit: 3.21.10(-10) M) without modifying the pH of the sample. The electrode systems were printed on both rigid and textile backing materials, to observe the influence of those materials on the final performance of the sensor.
机译:在该研究中报道了一种阳极剥离伏安法,用于使用一次性传感器的亚纳米摩尔PB浓度确定,每个由三个(计数器,加工和参考)丝网印刷电极组成。通过使用单壁碳纳米管,电解石墨烯氧化物和金纳米颗粒,优化传感器性能。通过几种表面修饰测定Pb。在工作电极表面上各种尺寸的电流金纳米颗粒沉积的扫描电子显微镜研究表明,大约100nm的球形纳米颗粒提供了最佳结果。用石墨烯和金纳米颗粒改性工作电极允许测定海水中的PB2 +(检测极限:3.21.10(-10)m)而不改变样品的pH。电极系统印在刚性和纺织品背衬材料上,以观察这些材料对传感器最终性能的影响。

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