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用于水中污染物电化学检测的纳米材料:综述。

Nanomaterials for electrochemical detection of pollutants in water: A review.

机构信息

School of Engineering and Sciences, Tecnologico de Monterrey, Av. Eugenio Garza Sada 2501 Sur, Monterrey, NL, 64849, Mexico.

出版信息

Electrophoresis. 2022 Jan;43(1-2):249-262. doi: 10.1002/elps.202100204. Epub 2021 Oct 29.

Abstract

The survival of living beings, including humanity, depends on a continuous supply of clean water. However, due to the development of industry, agriculture, and population growth, an increasing number of wastewaters is discarded, and the negative effects of such actions are clear. The first step in solving this situation is the collection and monitoring of pollutants in water bodies to subsequently facilitate their treatment. Nonetheless, traditional sensing techniques are typically laboratory-based, leading to potential diminishment in analysis quality. In this paper, the most recent developments in micro- and nano-electrochemical devices for pollutant detection in wastewater are reviewed. The devices reviewed are based on a variety of electrodes and the sensing of three different categories of pollutants: nutrients and phenolic compounds, heavy metals, and organic matter. From these electrodes, Cu, Co, and Bi showed promise as versatile materials to detect a grand variety of contaminants. Also, the most commonly used material is glassy carbon, present in the detection of all reviewed analytes.

摘要

生物的生存,包括人类,都依赖于持续供应清洁水。然而,由于工业、农业和人口增长的发展,越来越多的废水被丢弃,这些行为的负面影响是显而易见的。解决这种情况的第一步是收集和监测水体中的污染物,以便随后对其进行处理。然而,传统的传感技术通常是基于实验室的,这可能会降低分析质量。本文综述了用于废水中污染物检测的微纳电化学器件的最新进展。所综述的器件基于各种电极和对三种不同类别的污染物的传感:营养物和酚类化合物、重金属和有机物。在这些电极中,Cu、Co 和 Bi 表现出作为多功能材料检测各种污染物的潜力。此外,最常用的材料是玻碳,存在于所有被综述的分析物的检测中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4869/9298077/6b301415d78e/ELPS-43-249-g001.jpg

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