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用于水环境中污染物检测的无酶聚苯胺基电化学纳米传感器的最新进展

Recent Developments in Enzyme-Free PANI-Based Electrochemical Nanosensors for Pollutant Detection in Aqueous Environments.

作者信息

Cohen Sarah, Chajanovsky Itamar, Suckeveriene Ran Yosef

机构信息

Water Industry Engineering Department, Kinneret Academic College on the Sea of Galilee, Zemach 15132, Israel.

Faculty of Engineering, Kinneret Academic College on the Sea of Galilee, Zemach 15132, Israel.

出版信息

Polymers (Basel). 2025 May 12;17(10):1320. doi: 10.3390/polym17101320.

Abstract

Wastewater management has a direct impact on the supply of drinking water. New cutting-edge technologies are crucial to the ever-growing demand for tailored solutions for pollutant removal, but these pollutants first need to be detected. Traditional techniques are costly and are no longer competitive in the wastewater cleaning market. One sustainable and economically viable alternative is the fabrication of integrated nanosensors composed of conducting polymers. These include polyaniline doped with various types of nanomaterials such as nanocarbons (carbon nanotubes and graphene), metal oxide nanoparticles/nanostructures, and quantum dots. The synergistic properties of these components can endow sensing materials with enhanced surface reactivity, greater electrocatalytic activity, as well as tunable redox activity and electrical conductivity. This review covers key recent advances in the field of non-enzyme electrochemical conductive polymer nanosensors for pollutant detection in aqueous environments or simulated polluted samples. It provides an introduction to these sensors, their preparation, applications, the environmental and economic hurdles impeding the large-scale development of PANI-based nanomaterials in sensing applications, and future directions for research and real-world applications.

摘要

废水管理对饮用水供应有着直接影响。新型前沿技术对于日益增长的污染物去除定制解决方案需求至关重要,但这些污染物首先需要被检测出来。传统技术成本高昂,在废水净化市场已不再具有竞争力。一种可持续且经济可行的替代方案是制造由导电聚合物组成的集成纳米传感器。这些包括掺杂有各种类型纳米材料的聚苯胺,如纳米碳(碳纳米管和石墨烯)、金属氧化物纳米颗粒/纳米结构以及量子点。这些组分的协同特性可赋予传感材料增强的表面反应性、更大的电催化活性,以及可调节的氧化还原活性和电导率。本综述涵盖了用于水环境或模拟污染样品中污染物检测的非酶电化学导电聚合物纳米传感器领域的近期关键进展。它介绍了这些传感器、它们的制备、应用、阻碍基于聚苯胺的纳米材料在传感应用中大规模发展的环境和经济障碍,以及研究和实际应用的未来方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db0b/12114906/a6f8aebcd284/polymers-17-01320-g001.jpg

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