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A Self-Supported CuO/Cu Nanowire Electrode as Highly Efficient Sensor for COD Measurement

机译:自支撑的CuO / Cu纳米线电极作为COD测量的高效传感器

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摘要

A self-supported CuO/Cu nanowire electrode (CuO/CuNWE), which was prepared by annealing Cu nanowires to form a porous Cu nanowire electrode (CuNWE) and then anodizing the as-prepared CuNWE in alkaline medium to generate Cu(OH)2 nanowires followed by calcination, was employed for chemical oxygen demand (COD) determination using cyclic voltammetry (CV). The structure and electrochemical behavior of the CuO/CuNWE were investigated by scanning electron microscopy, X-ray diffraction, and CV. The results indicated that the as-synthesized CuO/CuNWE, in which CuO nanowires with a length of several micrometers and a diameter of 100 to 300 nm could be found, was stable in alkaline medium and more electrocatalytically active for oxidizing a wide range of organic compounds in comparison with the CuNWE. Under optimized alkaline concentration and scan rate, the CuO/CuNWE exhibited a good performance for COD measurement, with a linear range of 5 to 1153 mg L−1, a sensitivity of 2.46× 10−2 mA /(mg L−1), and a detection limit of about 2.3 mg L−1. In addition, an excellent correlation was observed in COD values obtained by our method and the classic dichromate method (r = 0.9995, p < 0.01, n = 11). Finally, our method was successfully used to measure the COD values in real water samples, showing great potential for practical application in water pollution control.
机译:一种自支撑的CuO / Cu纳米线电极(CuO / CuNWE),其制备方法是将Cu纳米线退火以形成多孔Cu纳米线电极(CuNWE),然后在碱性介质中对制备的CuNWE进行阳极氧化以生成Cu(OH)2使用循环伏安法(CV)将纳米线随后煅烧用于化学需氧量(COD)测定。通过扫描电子显微镜,X射线衍射和CV研究了CuO / CuNWE的结构和电化学行为。结果表明,所合成的CuO / CuNWE在碱性介质中稳定,并且具有电催化活性,可氧化多种有机物,其中CuO / CuNWE的长度为几微米,直径为100-300 nm。与CuNWE比较。在优化的碱浓度和扫描速率下,CuO / CuNWE表现出良好的COD测量性能,线性范围为5至1153 mg L -1 ,灵敏度为2.46×10 - 2 mA /(mg L -1 ),检出限约为2.3 mg L -1 。此外,在通过我们的方法和经典重铬酸盐方法获得的COD值中观察到了极好的相关性(r = 0.9995,p <0.01,n = 11)。最终,我们的方法成功地用于测量实际水样中的COD值,在水污染控制中具有实际应用潜力。

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