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A Simple, Cost-Effective Sensor for Detecting Lead Ions in Water Using Under-Potential Deposited Bismuth Sub-Layer with Differential Pulse Voltammetry (DPV)

机译:一种简单,经济高效的传感器,使用电位差沉积的铋子层和差动脉冲伏安法(DPV)检测水中的铅离子

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This research has developed a simple to use, cost effective sensor system for the detection of lead ions in tap water. An under-potential deposited bismuth sub-layer on a thin gold film based electrochemical sensor was designed, manufactured, and evaluated. Differential pulse voltammetry (DPV) measurement technique was employed in this detection. Tap water from the Cleveland, OH, USA regional water district was the test medium. Concentrations of lead ion in the range of 8 × 10 ?7 M to 5 × 10 ?4 M were evaluated, showing a good sensitivity over this concentration range. The calibration curve for the DPV measurements of lead ions in tap water showed excellent reproducibility with R 2 value of 0.970. This DPV detection system required 3–6 min to complete the detection measurement. A longer measurement time of 6 min was used for the lower lead ion concentration. The selectivity of this lead ion sensor was very good, and Fe III, Cu II, Ni II, and Mg II at a concentration level of 5 × 10 ?4 M did not interfere with the lead ion measurement.
机译:这项研究开发了一种简单易用,经济高效的传感器系统,用于检测自来水中的铅离子。设计,制造和评估了基于金薄膜的电化学传感器上的欠电位沉积铋子层。此检测采用差分脉冲伏安法(DPV)测量技术。测试介质来自美国俄亥俄州克利夫兰地区水域。评估了铅离子的浓度范围为8×10?7 M至5×10?4 M,在此浓度范围内显示出良好的灵敏度。用于自来水中铅离子的DPV测量的校准曲线显示出极好的重现性,R 2值为0.970。此DPV检测系统需要3–6分钟才能完成检测测量。较低的铅离子浓度需要较长的6分钟测量时间。该铅离子传感器的选择性非常好,并且浓度为5×10?4 M的Fe III,Cu II,Ni II和Mg II不会干扰铅离子的测量。

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