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基于杯[4]芳烃的含咔唑共轭聚合物对气相中脂肪族硝基液体炸药和炸药示踪剂的协同检测作用

Cooperative Effects in the Detection of a Nitroaliphatic Liquid Explosive and an Explosive Taggant in the Vapor Phase by Calix[4]arene-Based Carbazole-Containing Conjugated Polymers.

作者信息

Barata Patrícia D, Prata José V

机构信息

Laboratório de Química Orgânica, Departamento de Engenharia Química and Centro de Investigação de Engenharia, Química e Biotecnologia, Instituto Superior de Engenharia de Lisboa, Instituto Politécnico de Lisboa, R. Conselheiro Emídio Navarro, 1959-007 Lisboa (Portugal).

出版信息

Chempluschem. 2014 Jan;79(1):83-89. doi: 10.1002/cplu.201300280. Epub 2013 Oct 11.

Abstract

Two fluorescent molecular receptor based conjugated polymers were used in the detection of a nitroaliphatic liquid explosive (nitromethane) and an explosive taggant (2,3-dimethyl-2,3-dinitrobutane) in the vapor phase. Results have shown that thin films of both polymers display remarkably high sensitivity and selectivity toward these analytes. Very fast, reproducible, and reversible responses were found. The unique behavior of these supramolecular host systems is ascribed to cooperativity effects developed between the calix[4]arene hosts and the phenylene ethynylene-carbazolylene main chains. The calix[4]arene hosts create a plethora of host-guest binding sites along the polymer backbone, either in their bowl-shaped cavities or between the outer walls of the cavity, to direct guests to the area of the transduction centers (main chain) at which favorable photoinduced electron transfer to the guest molecules occurs and leads to the observed fluorescence quenching. The high tridimensional porous nature of the polymers imparted by the bis-calixarene moieties concomitantly allows fast diffusion of guest molecules into the polymer thin films.

摘要

两种基于荧光分子受体的共轭聚合物被用于检测气相中的硝基脂肪族液体炸药(硝基甲烷)和炸药示踪剂(2,3-二甲基-2,3-二硝基丁烷)。结果表明,两种聚合物的薄膜对这些分析物都表现出非常高的灵敏度和选择性。发现响应非常快速、可重复且可逆。这些超分子主体系统的独特行为归因于杯[4]芳烃主体与亚苯基乙炔基-咔唑基主链之间产生的协同效应。杯[4]芳烃主体沿着聚合物主链在其碗状空腔内或空腔外壁之间形成大量的主客体结合位点,将客体引导至转导中心(主链)区域,在该区域发生有利于向客体分子的光致电子转移并导致观察到的荧光猝灭。双杯芳烃部分赋予聚合物的高三维多孔性质同时允许客体分子快速扩散到聚合物薄膜中。

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