Wei Tai-Bao, Ma Xiao-Qiang, Fan Yan-Qing, Jiang Xiao-Mei, Dong Hong-Qiang, Yang Qing-Yu, Zhang Yun-Fei, Yao Hong, Lin Qi, Zhang You-Ming
Key Laboratory of Eco-functional Polymer Materials of the Ministry of Education, Key Laboratory of Eco-environmental Polymer Materials of Gansu Province, College of Chemistry and Chemical Engineering, Northwest Normal University, Lanzhou, 730070, China.
Soft Matter. 2019 Aug 21;15(33):6753-6758. doi: 10.1039/c9sm01385g.
In this study, a novel aggregation-induced emission supramolecular organic framework (AIE SOF) with ultrasensitive response, termed FSOF, was constructed using a tri-pillar[5]arene-based foldamer. Interestingly, benefiting from the noise signal shielding properties of FSOF as well as the competition between the cationπ and ππ interactions, the FSOF shows an ultrasensitive response for multi-analytes, such as Fe3+, Hg2+ and Cr3+. The limits of detection (LODs) of the FSOF for Fe3+, Hg2+ and Cr3+ are in the range of 9.40 × 10-10-1.86 × 10-9. More importantly, the xerogel of FSOF exhibits porous mesh structures, which could effect high-efficiency separation above metal ions from their aqueous solution, with adsorption percentages in the range 92.39-99.99%. In addition, by introducing metal ions into the FSOF, a series of metal ions coordinated supramolecular organic frameworks (MSOFs) were successfully constructed. Moreover, MSOFs show selective fluorescence "turn on" ultrasensitive detection CN- (LOD = 2.12 × 10-9) and H2PO4- (LOD = 1.78 × 10-9). This is a novel approach to construct SOFs through a tri-pillar[5]arene-based foldamer, and also provides a new way to achieve ultrasensitive detection and high-efficiency separation.
在本研究中,使用基于三柱[5]芳烃的折叠体构建了一种具有超灵敏响应的新型聚集诱导发光超分子有机框架(AIE SOF),称为FSOF。有趣的是,受益于FSOF的噪声信号屏蔽特性以及阳离子π和ππ相互作用之间的竞争,FSOF对多种分析物,如Fe3+、Hg2+和Cr3+表现出超灵敏响应。FSOF对Fe3+、Hg2+和Cr3+的检测限在9.40×10-10 - 1.86×10-9范围内。更重要的是,FSOF的干凝胶呈现多孔网状结构,这可以实现从水溶液中高效分离上述金属离子,吸附百分比在92.39 - 99.99%范围内。此外,通过将金属离子引入FSOF,成功构建了一系列金属离子配位超分子有机框架(MSOFs)。而且,MSOFs表现出选择性荧光“开启”超灵敏检测CN-(检测限 = 2.12×10-9)和H2PO4-(检测限 = 1.78×10-9)。这是一种通过基于三柱[5]芳烃的折叠体构建SOFs的新方法,也为实现超灵敏检测和高效分离提供了一条新途径。