Alshareef Mubark
Department of Chemistry, Faculty of Applied Science, Umm Al Qura University, Makkah, Saudi Arabia.
Crit Rev Anal Chem. 2025;55(1):83-98. doi: 10.1080/10408347.2023.2263877. Epub 2023 Oct 4.
Recently, organic sensors for the detection of Ag and other metal ions have experienced significant advancements. This is because there is a growing demand for reliable and sensitive tools to monitor various environmental pollutants. Organic sensors have O-, S-, and N-donor atoms, which can act as a ligand and coordinate with different metal ions, hence stabilizing them in a variety of oxidation states. This interaction gives colorimetric and fluorescence changes, which are used to monitor Ag and other metal ions. This comprehensive review highlights the latest developments in organic sensors for the recognition of Ag. We present an in-depth analysis of the underlying principles and mechanisms governing Ag ion recognition. Various organic sensing platforms, such as fluorescent and colorimetric sensors, are discussed, shedding light on their unique advantages and limitations. Special attention is given to the diverse range of organic ligands, receptors, and functional materials used to achieve high sensitivity, selectivity, and quantification accuracy. Additionally, we delve into real-world applications of organic sensors for Ag ion detection, examining their performance in complex matrices such as biological, environmental, industrial and agricultural matrices.
最近,用于检测银及其他金属离子的有机传感器取得了显著进展。这是因为对监测各种环境污染物的可靠且灵敏工具的需求日益增长。有机传感器含有氧、硫和氮供体原子,它们可以作为配体与不同金属离子配位,从而使金属离子在多种氧化态下保持稳定。这种相互作用会引起比色和荧光变化,用于监测银及其他金属离子。这篇综述重点介绍了用于识别银的有机传感器的最新进展。我们对银离子识别的基本原理和机制进行了深入分析。讨论了各种有机传感平台,如荧光传感器和比色传感器,阐明了它们的独特优势和局限性。特别关注了用于实现高灵敏度、选择性和定量准确性的各种有机配体、受体和功能材料。此外,我们深入探讨了有机传感器在银离子检测中的实际应用,考察了它们在生物、环境、工业和农业等复杂基质中的性能。