Xu Yeqing, Huang Ting, Meng Minjia, Yan Yongsheng
Institute of Green Chemistry and Chemical Technology, Advanced Chemical Engineering Laboratory of Green Materials and Energy of Jiangsu Province, School of Chemistry and Chemical Engineering, Jiangsu University, Zhenjiang, 212013, China.
Mikrochim Acta. 2021 Dec 11;189(1):25. doi: 10.1007/s00604-021-05106-3.
A highly effective fluorescent molecularly imprinted sensor (F-PDA-MIS) based on fluorescent polydopamine (F-PDA) was successfully synthesized for selective and ultrafast detection of p-nitrophenol (P-NP) in drinking water. F-PDA with abundant surface functional groups has been artfully modified to firstly serve as both fluorescent monomer and functional monomer in the synthesis of a uniform luminous F-PDA-MIS, which can greatly improve the detection efficiency. As expected, F-PDA-MIS had an obvious emission wavelength of 535 nm with the optimal excitation wavelength at 400 nm. Specially, F-PDA-MIS could detect P-NP in the range 100 to 1100 nM with much lower detection limit of 24.2 nM within 120 s compared with other conventional imprinted fluorescent sensors based on pure quantum dots (QDs) or dyes. This excellent test phenomenon is mainly ascribed to the rapid electron transfer between F-PDA and P-NP. Satisfactory recovery of 98.0-104% for mineral water and 98.6-106% for boiling water were obtained with relative standard deviations (RSDs) of 2.7-3.4% and 2.6-3.5% respectively. The detection reliability of F-PDA-MIS was verified by the comparison with high-performance liquid chromatography (HPLC-UV). Consequently, F-PDA as a fluorescence functional monomer has been shown to be a possible strategy to effectively improve the detection limit and shorten response time of the target determination in water..
成功合成了一种基于荧光聚多巴胺(F-PDA)的高效荧光分子印迹传感器(F-PDA-MIS),用于选择性和超快速检测饮用水中的对硝基苯酚(P-NP)。具有丰富表面官能团的F-PDA经过巧妙修饰,首先在合成均匀发光的F-PDA-MIS中用作荧光单体和功能单体,这可以大大提高检测效率。正如预期的那样,F-PDA-MIS在最佳激发波长为400 nm时具有明显的发射波长535 nm。特别地,与其他基于纯量子点(QDs)或染料的传统印迹荧光传感器相比,F-PDA-MIS能够在120 s内检测100至1100 nM范围内的P-NP,检测限低得多,为24.2 nM。这种优异的测试现象主要归因于F-PDA和P-NP之间的快速电子转移。矿泉水的回收率为98.0-104%,沸水的回收率为98.6-106%,相对标准偏差(RSD)分别为2.7-3.4%和2.6-3.5%。通过与高效液相色谱(HPLC-UV)比较,验证了F-PDA-MIS的检测可靠性。因此,F-PDA作为荧光功能单体已被证明是一种有效提高水中目标物检测限和缩短响应时间的可能策略。