College of Chemistry and Life Science, Zhejiang Normal University, Jinhua 321004, PR China; College of Biological, Chemical Sciences and Engineering, Jiaxing University, Jiaxing 314001, PR China.
College of Biological, Chemical Sciences and Engineering, Jiaxing University, Jiaxing 314001, PR China.
Biosens Bioelectron. 2018 Jan 15;99:47-55. doi: 10.1016/j.bios.2017.07.041. Epub 2017 Jul 15.
Rapid and efficient detecting trace amount of environmental p-nitroaniline (p-NA) is in urgent need for security concerns and pollution supervision. In this work we report the use of molecularly imprinted polymeric ionic liquid (MIPIL) microspheres to construct recognizable surfaces for detection of p-NA through fluorescence quenching. The p-NA imprinted microspheres are synthesized by precipitation polymerization upon co-polymerization of 3-(anthracen-9-ylmethyl)-1-vinyl-1H-imidazol-3-ium chloride (Fluorescent IL monomer) with ethyleneglycol dimethacrylate (EGDMA). The electron-rich group alkenyl imidazole in IL functional monomer can dramatically improve the emission of anthracene fluorophore and the π-π stacking, electronic, and hydrogen bond between p-NA and MIPIL can efficiently enhance the selective recognition force. The as-synthesized MIPIL microspheres present spherical shape, high fluorescence emission intensity and specific recognition, which showed rapid detection rate (1min), stable reusable property (at least 4 time recycles), wonderful selectivity over several structural analogs, wide linear range (10nM to 10M) with a correlation coefficient of 0.992, and excellent sensitivity (LOD, 9nM). As synthesis and surface functionalization of MIPIL microspheres are well established, the methods reported in this work are facile, rapid and efficient for monitoring p-NA in environmental wastewater.
快速高效地检测痕量环境对硝基苯胺(p-NA)是出于安全考虑和污染监督的迫切需要。在这项工作中,我们报告了使用分子印迹聚合离子液体(MIPIL)微球通过荧光猝灭来构建用于检测 p-NA 的可识别表面。p-NA 印迹微球是通过共聚 3-(蒽-9-基甲基)-1-乙烯基-1H-咪唑-3-氯化物(荧光 IL 单体)与乙二醇二甲基丙烯酸酯(EGDMA)在沉淀聚合中合成的。IL 功能单体中的富电子烯基咪唑可以显著提高蒽荧光团的发射强度和π-π堆积、电子和氢键之间的相互作用,从而有效地增强对 p-NA 和 MIPIL 的选择性识别力。合成的 MIPIL 微球呈现出球形、高荧光发射强度和特异性识别,具有快速检测速率(1min)、稳定的可重复使用性(至少 4 次循环)、对几种结构类似物的出色选择性、宽线性范围(10nM 至 10M),相关系数为 0.992,以及出色的灵敏度(LOD,9nM)。由于 MIPIL 微球的合成和表面功能化已经成熟,因此本工作中报道的方法简便、快速、高效,可用于监测环境废水中的 p-NA。