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铜纳米线阵列作为水中硝酸盐离子的高选择性电化学传感器。

Copper nanowire array as highly selective electrochemical sensor of nitrate ions in water.

机构信息

Laboratorio di Chimica Fisica Applicata, Dipartimento di Ingegneria, Università of Palermo, Viale delle Scienze, Palermo, Italy.

Nanotechnology Group, Tyndall National Institute, University College Cork, Dyke Parade, Cork, Ireland.

出版信息

Talanta. 2021 Jan 1;221:121643. doi: 10.1016/j.talanta.2020.121643. Epub 2020 Sep 10.

Abstract

Contamination of water with nitrate ions is a significant problem that affects many areas of the world. For this reason, European legislation has set the maximum permissible concentration of nitrates in drinking water at 44 mg/L. Thus, it is clear that a continuous monitoring of nitrate ions is of high technological interest but it must be rapid, easy to perform and directly performable in situ. In this work we have developed a nanostructured sensor based on array of copper nanowires obtained with the simple method of galvanic deposition. The nanostructured sensors have a very short response time with a detection limit less than 10 μM. Different interfering species were tested finding a negligible effect except for the chloride ions. However, this problem has been solved by removing chloride ions from the water through a simple precipitation of chloride compounds with low solubility. Nanostructured sensors were also used to analyze real water samples (rain, river and drinking water). In the case of drinking water, we have measured a concentration of nitrate ions very close to the that measured by conventional laboratory techniques.

摘要

水中硝酸盐离子的污染是一个影响世界许多地区的重大问题。出于这个原因,欧洲法规将饮用水中硝酸盐的最大允许浓度设定在 44mg/L。因此,很明显,对硝酸盐离子的连续监测具有很高的技术意义,但它必须快速、易于执行并且可以直接现场进行。在这项工作中,我们开发了一种基于电化学沉积法获得的铜纳米线阵列的纳米结构传感器。纳米结构传感器的响应时间非常短,检测限低于 10μM。测试了不同的干扰物质,发现除了氯离子之外,几乎没有影响。然而,通过用低溶解度的氯化物化合物简单沉淀来去除水中的氯离子,解决了这个问题。纳米结构传感器还用于分析实际水样(雨水、河水和饮用水)。在饮用水的情况下,我们测量的硝酸盐离子浓度非常接近常规实验室技术测量的浓度。

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