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用于检测和定量含硫气体的荧光传感。

Fluorescent Sensing for the Detection and Quantification of Sulfur-Containing Gases.

机构信息

Qingdao Innovation and Development Center, Harbin Engineering University, Qingdao, Shandong 266000, China.

School of Physics and Engineering, ITMO University, Saint Petersburg 191002, Russia.

出版信息

ACS Sens. 2024 Nov 22;9(11):5708-5727. doi: 10.1021/acssensors.4c02033. Epub 2024 Nov 13.

Abstract

Sulfur-containing gases, such as HS and SO, play significant roles in a multitude of biological processes affecting human life and health. Precise and efficient detection of these gases is therefore crucial for advancing one's understanding of their biological roles and developing effective diagnostic strategies. Fluorescent sensing offers a highly sensitive and versatile approach for detecting these gases. This Review examines the recent advances in the fluorescent detection of HS and SO, highlighting the key mechanisms involved in fluorescence signal transduction, including changes in intensity and wavelength shifts. The diverse array of probe molecules employed for this purpose, including those utilizing mechanisms such as nucleophilic reactions, Förster resonance energy transfer (FRET), and sulfur affinity interactions are explored. In additional to organic sensors, the focus of the Review is particularly directed toward quantum dot (QD) systems, emphasizing their tunable optical properties that hold immense potential for fluorescence sensing. Beyond the traditional III-V QDs, we delve into the emerging fluorescence sensors based on halide perovskite QDs, upconversion nanocrystals, and other novel materials. These advanced QD systems hold promise for the development of highly sensitive and cost-effective gas detectors, paving the way for significant advances in biomedical and environmental monitoring. This Review provides a comprehensive overview of the current state-of-the-art in QD-based fluorescence sensing of sulfur-containing gases and provides a multifaceted discussion comparing organic fluorescent sensors with QD sensors, highlighting the key challenges and opportunities for the integration of fluorescence sensing as it evolves. The Review aims to facilitate further research and development of innovative sensing platforms to enable more accurate and sensitive detection of these important gases.

摘要

含硫气体,如 H2S 和 SO2,在影响人类生活和健康的多种生物过程中发挥着重要作用。因此,精确和高效地检测这些气体对于深入了解它们的生物学作用和开发有效的诊断策略至关重要。荧光传感为检测这些气体提供了一种高度灵敏和多功能的方法。本综述考察了 H2S 和 SO2 的荧光检测的最新进展,重点介绍了荧光信号转导中涉及的关键机制,包括强度变化和波长位移。探讨了用于此目的的各种探针分子,包括利用亲核反应、Förster 共振能量转移 (FRET) 和硫亲和力相互作用等机制的探针分子。除了有机传感器外,本综述的重点特别针对量子点 (QD) 系统,强调它们可调谐的光学性质在荧光传感中具有巨大的潜力。除了传统的 III-V QD 外,我们还深入研究了基于卤化物钙钛矿 QD、上转换纳米晶体和其他新型材料的新兴荧光传感器。这些先进的 QD 系统有望开发出高度灵敏和具有成本效益的气体探测器,为生物医学和环境监测的重大进展铺平道路。本综述全面概述了基于 QD 的含硫气体荧光传感的最新现状,并通过与 QD 传感器进行多方面的比较,讨论了有机荧光传感器的关键挑战和机遇,突出了荧光传感在不断发展中的集成的关键挑战和机遇。本综述旨在促进创新传感平台的进一步研究和开发,以实现对这些重要气体更准确和灵敏的检测。

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