School of Chemical Engineering and Light Industry, Guangdong University of Technology, Guangzhou, Guangdong 510006, China.
Department of Chemistry and Center of Super-Diamond and Advanced Films (COSDAF), City University of Hong Kong, 83 Tat Chee Avenue, Kowloon, Hong Kong, China.
Analyst. 2019 Feb 21;144(4):1353-1360. doi: 10.1039/c8an02126k. Epub 2018 Dec 19.
In this article, we present an ultra-sensitive and ratiometric fluorescent probe (TR-Hg) for Hg detection based on the mechanism of aggregation induced emission (AIE) and dark through-bond energy transfer (DTBET). The probe was constructed using tetraphenylethene as the dark donor and rhodamine B thiolactone as the acceptor. By exploiting the advantages of DTBET, which eliminates emission leakage from dark donors and provides nearly 100% energy transfer efficiency, TR-Hg exhibits more than a 30 000-fold fluorescence ratio enhancement after reacting with Hg. TR-Hg demostrates (i) a detection limit of 43 pM, which is the lowest among the reported ratiometric Hg probes, (ii) excellent selectivity, fast response-time (<10 s) and a wide pH application range, (iii) strong applicability for paper-based colorimetric assay, where readout can be performed by the naked eye, and (iv) fluorescent imaging of Hg in onion epidermal tissues, indicating its potential use in living organisms.
在本文中,我们提出了一种基于聚集诱导发射(AIE)和暗键能转移(DTBET)机制的超灵敏比色荧光探针(TR-Hg)用于 Hg 的检测。该探针以四苯乙烯为暗供体,罗丹明 B 硫内酯为受体构建而成。通过利用 DTBET 的优势,即消除暗供体的发射泄漏并提供近 100%的能量转移效率,TR-Hg 在与 Hg 反应后表现出超过 30000 倍的荧光比率增强。TR-Hg 具有以下特点:(i)检测限为 43 pM,是已报道的比色 Hg 探针中最低的;(ii)具有优异的选择性、快速的响应时间(<10 s)和宽的 pH 适用范围;(iii)在纸基比色测定中具有很强的适用性,可通过肉眼进行读取;(iv)在洋葱表皮组织中对 Hg 的荧光成像,表明其在生物活体中的潜在应用。