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振动硼掺杂金刚石电极:一种新型、耐用且高灵敏度的镉检测工具。

Vibrating boron-doped diamond electrode: A new, durable and highly sensitive tool for the detection of cadmium.

机构信息

CSIRO, Mineral Resources, Private Bag 10, Clayton South, Victoria, 3169, Australia.

Department of Chemical Engineering and Analytical Chemistry, University of Barcelona, Martí i Franquès 1-11, 08028, Barcelona, Spain.

出版信息

Anal Chim Acta. 2021 Dec 15;1188:339166. doi: 10.1016/j.aca.2021.339166. Epub 2021 Oct 15.

Abstract

In this paper, a vibrating boron-doped diamond (BDD) electrode electroanalytical device and respective method for the analysis of ultralow concentrations of Cd(II) in water were studied. The enhanced mass transfer on the electrode surface was studied using Ru(NH)Cl. Vibration with 133 Hz frequency enhanced the Ru(III) to Ru(II) reduction by 92.6% compared to a static electrode. The peak current of the anodic stripping voltammetry (ASV) method employed was increased by a factor of 5.3 and 4.7 for 10 and 30 μg L Cd(II) concentrations, respectively, when a frequency of 200 Hz was used. A calibration plot with two linear regions was resolved between 0.01 and 1 μg L and 1-30 μg L with the LOD and LOQ of 0.04 μg L and 0.12 μg L, respectively. The applicability of the device and the respective method in the analysis of real environmental samples was successfully verified by analysis of river samples and comparing the results with the ICP analysis presenting high reproducibility and trueness. According to the results of this research, the vibrating BDD electrode with the ASV method has excellent analytical performance without surface modification or regular replacement or polishing of the electrode surface. Combining the exceptional electrochemical and chemical properties of BDD with enhanced mass transfer and signal strength of vibrating electrodes makes the system especially suitable for on-site and online analysis of heavy metals.

摘要

本文研究了一种用于分析水中超低浓度 Cd(II) 的振动硼掺杂金刚石 (BDD) 电极电分析装置及相应方法。使用 Ru(NH)Cl 研究了电极表面增强的传质。与静态电极相比,频率为 133 Hz 的振动将 Ru(III) 还原为 Ru(II) 的效率提高了 92.6%。当使用 200 Hz 的频率时,阳极溶出伏安法 (ASV) 方法的峰电流分别增加了 5.3 倍和 4.7 倍,对于 10 和 30 μg L Cd(II) 浓度,分别增加了 5.3 倍和 4.7 倍。在 0.01 和 1 μg L 与 1-30 μg L 之间,解决了具有两个线性区域的校准曲线,LOD 和 LOQ 分别为 0.04 μg L 和 0.12 μg L。通过对河流样品的分析并将结果与 ICP 分析进行比较,成功验证了该设备及相应方法在实际环境样品分析中的适用性,重现性和准确性均较高。根据这项研究的结果,具有 ASV 方法的振动 BDD 电极无需表面修饰或定期更换或抛光电极表面即可实现出色的分析性能。将 BDD 的出色电化学和化学性质与振动电极增强的传质和信号强度相结合,使该系统特别适合现场和在线分析重金属。

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