Department of General and Inorganic Chemistry, Faculty of Chemical Engineering and Technology, University of Zagreb, Marulićev trg 19, 10000 Zagreb, Croatia.
Sensors (Basel). 2023 Apr 2;23(7):3692. doi: 10.3390/s23073692.
With rapidly increasing environmental pollution, there is an urgent need for the development of fast, low-cost, and effective sensing devices for the detection of various organic and inorganic substances. Silver nanoparticles (AgNPs) are well known for their superior optoelectronic and physicochemical properties, and have, therefore, attracted a great deal of interest in the sensor arena. The introduction of AgNPs onto the surface of two-dimensional (2D) structures, incorporation into conductive polymers, or within three-dimensional (3D) nanohybrid architectures is a common strategy to fabricate novel platforms with improved chemical and physical properties for analyte sensing. In the first section of this review, the main wet chemical reduction approaches for the successful synthesis of functional AgNPs for electrochemical sensing applications are discussed. Then, a brief section on the sensing principles of voltammetric and amperometric sensors is given. The current utilization of silver nanoparticles and silver-based composite nanomaterials for the fabrication of voltammetric and amperometric sensors as novel platforms for the detection of environmental pollutants in water matrices is summarized. Finally, the current challenges and future directions for the nanosilver-based electrochemical sensing of environmental pollutants are outlined.
随着环境污染的迅速加剧,迫切需要开发用于检测各种有机和无机物质的快速、低成本且有效的传感装置。银纳米粒子(AgNPs)以其优异的光电和物理化学性质而闻名,因此在传感器领域引起了极大的关注。将 AgNPs 引入二维(2D)结构的表面、掺入导电聚合物中或三维(3D)纳米杂化结构中,是制造具有改善的化学和物理性质的新型平台以用于分析物传感的常用策略。在这篇综述的第一部分中,讨论了成功合成用于电化学传感应用的功能化 AgNPs 的主要湿化学还原方法。然后,简要介绍了伏安法和安培法传感器的传感原理。总结了银纳米粒子和基于银的复合纳米材料在作为水基质中环境污染物检测的新型平台的伏安法和安培法传感器的制备中的当前利用。最后,概述了基于纳米银的电化学传感环境污染物的当前挑战和未来方向。