Recent Advances in Fluorescent Based Chemical Probes for the Detection of Perchlorate Ions.

IF 4.2 2区 化学 Q1 CHEMISTRY, ANALYTICAL
Gilbert K Kosgei, P U Ashvin Iresh Fernando
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引用次数: 0

Abstract

This review highlights recent advancements and challenges in fluorescence-based chemical sensors for selective and sensitive detection of perchlorate, a persistent environmental pollutant and global concern due to its health and safety implications. Perchlorate is a highly persistent inorganic pollutant found in drinking water, soil, and air, with known endocrine-disruptive properties due to its interference with iodide uptake by the thyroid gland. Human exposure mainly occurs through contaminated water and food. Additionally, perchlorates are prevalent in improvised explosives, causing numerous civilian casualties, making their detection important in a worldwide aspect. Fluorescence-based chemical sensors provide a valuable tool for the selective detection of perchlorate ions due to their simplicity and applicability across various fields, including biology, pharmacology, military, and environmental science. This review article overviews perchlorate chemistry, occurrence, and remediation strategies, compares regulatory limits, and examines fluorescence-based detection mechanisms. It systematically summarizes recent advancements in designing at least a dozen fluorescence-based chemical materials for detecting perchlorate in the environment over the past decade. Key focus areas include the design and molecular architecture of synthetic chemical chromophores for perchlorate sensing and the photochemistry mechanisms driving their effectiveness. The main findings indicate that there has been significant progress in the development of reliable and robust fluorescence-based sensors with higher selectivity and sensitivity for perchlorate detection. However, several challenges remain, such as improving detection limits and sensor stability. The review outlines potential future research directions, emphasizing the need for further innovation in sensor design and development. It aims to enhance understanding and spur advances that could create more efficient and robust chemical scaffolds for perchlorate sensing. By addressing current limitations and identifying opportunities for improvement, the review provides a comprehensive resource for researchers working to develop better detection methods for this significant environmental pollutant.

荧光化学探针检测高氯酸盐离子的研究进展。
高氯酸盐是一种持久性环境污染物,因其对健康和安全的影响而受到全球关注,本文综述了荧光化学传感器在选择性和敏感检测高氯酸盐方面的最新进展和挑战。高氯酸盐是一种高度持久性的无机污染物,存在于饮用水、土壤和空气中,由于其干扰甲状腺对碘的吸收,具有已知的内分泌干扰特性。人类主要通过受污染的水和食物接触。此外,高氯酸盐普遍存在于简易炸药中,造成许多平民伤亡,因此在世界范围内对其进行探测很重要。基于荧光的化学传感器为高氯酸盐离子的选择性检测提供了有价值的工具,因为它们的简单性和适用性在各个领域,包括生物学,药理学,军事和环境科学。这篇综述文章概述了高氯酸盐的化学、发生和补救策略,比较了监管限制,并检查了基于荧光的检测机制。它系统地总结了最近的进展,在设计至少十二个荧光为基础的化学材料检测高氯酸盐在环境中,在过去的十年。重点关注的领域包括高氯酸盐传感合成化学发色团的设计和分子结构以及驱动其有效性的光化学机制。主要研究结果表明,在开发可靠和强大的荧光传感器方面取得了重大进展,该传感器具有更高的高氯酸盐检测选择性和灵敏度。然而,仍然存在一些挑战,例如提高检测极限和传感器稳定性。综述概述了未来潜在的研究方向,强调了传感器设计和开发进一步创新的必要性。它的目的是加强理解和促进进步,可以为高氯酸盐传感创造更有效和强大的化学支架。通过解决当前的限制和确定改进的机会,这篇综述为研究人员开发更好的检测这种重要环境污染物的方法提供了一个全面的资源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
12.00
自引率
4.00%
发文量
137
审稿时长
6 months
期刊介绍: Critical Reviews in Analytical Chemistry continues to be a dependable resource for both the expert and the student by providing in-depth, scholarly, insightful reviews of important topics within the discipline of analytical chemistry and related measurement sciences. The journal exclusively publishes review articles that illuminate the underlying science, that evaluate the field''s status by putting recent developments into proper perspective and context, and that speculate on possible future developments. A limited number of articles are of a "tutorial" format written by experts for scientists seeking introduction or clarification in a new area. This journal serves as a forum for linking various underlying components in broad and interdisciplinary means, while maintaining balance between applied and fundamental research. Topics we are interested in receiving reviews on are the following: · chemical analysis; · instrumentation; · chemometrics; · analytical biochemistry; · medicinal analysis; · forensics; · environmental sciences; · applied physics; · and material science.
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