PCFM Lab, School of Materials Science and Engineering , Sun Yat-sen University , Guangzhou , 510275 , China.
Key Laboratory of Polymer Processing Engineering , South China University of Technology, Ministry of Education , Guangzhou , 510640 , China.
ACS Sens. 2019 Sep 27;4(9):2536-2545. doi: 10.1021/acssensors.9b01402. Epub 2019 Sep 10.
Pollutant detection is of great importance for quality control of drinking water and environmental protection. The common methods of pollutant detection suffer from time-consuming procedures, bulky and expensive instruments, and complicated sample pretreatment. Herein, a type of conceptually new self-amplified fluorescent nanoparticle (SAFN) is constructed based on aggregation-induced emission (AIE) luminogens for rapid and visual detection of xylene in aqueous media. AIE luminogens are self-assembled into SAFNs in aqueous media, which emit efficiently due to the aggregation of luminogen molecules. The SAFNs of AIE luminogens stick xylene molecules from aqueous media through multiple interactions including hydrophobic and π-π interactions. Upon capturing xylene, SAFNs swell, which quench the fluorescence of the whole SAFNs, showing the self-amplification effect. Such a self-amplification effect is entirely different from that of conjugated polymers in the literature. Importantly, fluorescence quenching of SAFNs by xylene can be readily observed by the naked eye, which enables visual xylene sensing. The SAFNs enable rapid and visual detection of xylene in aqueous media with a low detection limit (5 μg/L) in the order of seconds. Given high sensitivity, rapid response, simple and easy operation, and low cost, SAFNs of AIE luminogens present a promising platform for visual detection of organic pollutants in aqueous media.
污染物检测对于饮用水质量控制和环境保护至关重要。常见的污染物检测方法存在耗时的程序、庞大而昂贵的仪器以及复杂的样品预处理等问题。在此,我们基于聚集诱导发光(AIE)发光体构建了一种新型的自增荧光纳米粒子(SAFN),用于快速、可视化检测水相中的二甲苯。AIE 发光体在水相中原位自组装成 SAFN,由于发光分子的聚集而高效发光。SAFN 通过包括疏水作用和 π-π 相互作用在内的多种相互作用从水相中捕获二甲苯分子。在捕获二甲苯后,SAFN 会膨胀,从而猝灭整个 SAFN 的荧光,表现出自增感效应。这种自增感效应与文献中的共轭聚合物完全不同。重要的是,SAFN 对二甲苯的荧光猝灭可以通过肉眼轻易观察到,从而实现了可视化二甲苯传感。SAFN 能够在数秒内快速、可视化检测水相中的二甲苯,检测限低至 5μg/L。鉴于其高灵敏度、快速响应、简单易用和低成本的特点,AIE 发光体的 SAFN 为水相中有机污染物的可视化检测提供了一种很有前途的平台。