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荧光基爆炸物检测:从机理到传感材料。

Fluorescence based explosive detection: from mechanisms to sensory materials.

机构信息

Department of Chemical and Biomolecular Engineering, University of Connecticut, 191 Auditorium Road, Unit 3222, Storrs, CT 06269, USA.

出版信息

Chem Soc Rev. 2015 Nov 21;44(22):8019-61. doi: 10.1039/c5cs00496a. Epub 2015 Sep 3.

Abstract

The detection of explosives is one of the current pressing concerns in global security. In the past few decades, a large number of emissive sensing materials have been developed for the detection of explosives in vapor, solution, and solid states through fluorescence methods. In recent years, great efforts have been devoted to develop new fluorescent materials with various sensing mechanisms for detecting explosives in order to achieve super-sensitivity, ultra-selectivity, as well as fast response time. This review article starts with a brief introduction on various sensing mechanisms for fluorescence based explosive detection, and then summarizes in an exhaustive and systematic way the state-of-the-art of fluorescent materials for explosive detection with a focus on the research in the recent 5 years. A wide range of fluorescent materials, such as conjugated polymers, small fluorophores, supramolecular systems, bio-inspired materials and aggregation induced emission-active materials, and their sensing performance and sensing mechanism are the centerpiece of this review. Finally, conclusions and future outlook are presented and discussed.

摘要

爆炸物检测是当前全球安全的一大关注点。在过去几十年中,已经开发出大量的发射传感材料,通过荧光方法用于检测蒸气、溶液和固态中的爆炸物。近年来,人们致力于开发具有各种传感机制的新型荧光材料,以实现超高灵敏度、超高选择性以及快速响应时间。本文综述了基于荧光的爆炸物检测的各种传感机制,并全面、系统地总结了近 5 年来用于爆炸物检测的荧光材料的最新研究进展。综述内容涵盖了各种荧光材料,如共轭聚合物、小分子荧光团、超分子体系、仿生材料和聚集诱导发射活性材料,以及它们的传感性能和传感机制。最后,本文提出并讨论了结论和未来展望。

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