基于纳米材料的光学比色传感器用于快速监测无机砷物种:综述。

0 MATERIALS SCIENCE, MULTIDISCIPLINARY
Kalayou Hiluf Gebremedhin, Mebrahtu Hagos Kahsay, Nigus Kebede Wegahita, Tesfamariam Teklu, Berihu Abadi Berhe, Asfaw Gebretsadik Gebru, Amanuel Hadera Tesfay, Abraha Geberekidan Asgedom
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引用次数: 0

摘要

因此,对砷化合物毒性的健康关注促使人们开发新的分析工具,以提高灵敏度、选择性和可靠性,对实际样品中的砷进行快速监测。本文概述了用于实时监测环境中无机砷物种的先进光学比色传感器技术。本文介绍并讨论了几种先进的亚砷酸盐(As+3)和砷酸盐(As+5)光学比色传感器技术,它们分别基于掺杂发色染料/试剂、生物分子修饰纳米材料和砷结合配体系留纳米材料。本综述还强调了砷物种比色传感器的优点和局限性。最后,还提出了砷物种光学比色传感器的前景和未来发展。对于该领域的未来研究,特别是实地应用,作者建议这篇综述论文将有助于读者了解各种砷光学比色传感器的设计原理及其相应的传感机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nanomaterial-based optical colorimetric sensors for rapid monitoring of inorganic arsenic species: a review.

Health concerns about the toxicity of arsenic compounds have therefore encouraged the development of new analytical tools for quick monitoring of arsenic in real samples with improved sensitivity, selectivity, and reliability. An overview of advanced optical colorimetric sensor techniques for real-time monitoring of inorganic arsenic species in the environment is given in this review paper. Herein, several advanced optical colorimetric sensor techniques for arsenite (As+3) and arsenate (As+5) based on doping chromogenic dyes/reagents, biomolecule-modified nanomaterials, and arsenic-binding ligand tethered nanomaterials are introduced and discussed. This review also highlights the benefits and limitations of the colorimetric sensor for arsenic species. Finally, prospects and future developments of an optical colorimetric sensor for arsenic species are also proposed. For future study in this sector, particularly for field application, authors recommend this review paper will be helpful for readers to understand the design principles and their corresponding sensing mechanisms of various arsenic optical colorimetric sensors.

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