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基于表面增强拉曼光谱的可自清洁分子印迹传感器的制备,用于选择性检测罗丹明6G。

Preparation of a self-cleanable molecularly imprinted sensor based on surface-enhanced Raman spectroscopy for selective detection of R6G.

作者信息

Li Hongji, Wang Zirun, Wang Xiaonan, Jiang Jiaqi, Xu Yeqing, Liu Xiqing, Yan Yongsheng, Li Chunxiang

机构信息

School of Chemistry and Chemical Engineering, Jiangsu University, Zhenjiang, Jiangsu, 212013, China.

School of Chemistry, Jilin Normal University, Siping, Jilin, 136000, China.

出版信息

Anal Bioanal Chem. 2017 Jul;409(19):4627-4635. doi: 10.1007/s00216-017-0410-y. Epub 2017 Jun 8.

Abstract

Novel molecularly imprinted polymers (MIPs) based on the technique of surface-enhanced Raman scattering (SERS) were successfully prepared. Firstly, ZnO nanorods were fabricated with Ag by reduction of Ag on the surface of the ZnO nanorods. Then, ZnO/Ag heterostructures were used as the substrate, rhodamine 6G was used as the template molecule, acrylamide was used as the functional monomer, ethylene glycol dimethacrylate was used as the cross-linker, and 2,2'-azobis(2-methylpropionitrile) was used as the initiator to prepare the ZnO/Ag MIPs (ZOA-MIPs). Through characterization analysis, it was proved that the novel ZOA-MIPs exhibited excellent SERS properties and selectivity. Under the optimal conditions, there was a good linear relationship (R  = 0.996) between the Raman signal (at 1654 cm) and the concentration of the templates, and the detection limit was 10 mol L. It was also proved that the ZOA-MIPs had the property of self-cleaning, resulting in good reusability. It is envisaged that the sensitivity of SERS coupled with the selectivity of MIPs could result in a promising chemosensor for practical applications.

摘要

成功制备了基于表面增强拉曼散射(SERS)技术的新型分子印迹聚合物(MIPs)。首先,通过在ZnO纳米棒表面还原Ag制备了ZnO/Ag纳米棒。然后,以ZnO/Ag异质结构为基底,罗丹明6G为模板分子,丙烯酰胺为功能单体,乙二醇二甲基丙烯酸酯为交联剂,2,2'-偶氮二异丁腈为引发剂制备了ZnO/Ag MIPs(ZOA-MIPs)。通过表征分析证明,新型ZOA-MIPs具有优异的SERS性能和选择性。在最佳条件下,拉曼信号(1654 cm处)与模板浓度之间存在良好的线性关系(R = 0.996),检测限为10 mol/L。还证明了ZOA-MIPs具有自清洁性能,具有良好的可重复使用性。预计SERS的灵敏度与MIPs的选择性相结合,将产生一种有前景的用于实际应用的化学传感器。

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