College of Chemistry and Molecular Sciences, Wuhan University, Wuhan, Hubei Province, 430072, PR China.
Mikrochim Acta. 2024 May 27;191(6):344. doi: 10.1007/s00604-024-06432-y.
A molecularly imprinted electrochemiluminescent sensor is developed for the sensitive detection of tetracycline in environmental and food samples. The sensor uses an ionic liquid (i.e. [APMIM]Br) modified graphene-carbon nanotube composite (GMI) material as substrate, a double-layered core-shell metal-organic framework NH-UiO-66@ZIF-8 (NUZ) loaded bipyridyl ruthenium (NUZ@Ru) as luminescent material, and a molecularly imprinted copolymer of o-phenylenediamine and hydroquinone as recognition element. The ionic liquid-modified graphene-carbon nanotube composite has a favorable three-dimensional structure, high specific surface area, and good hydrophilicity; the core-shell structured metal-organic framework has high stability and plentiful reaction sites for loading; the molecularly imprinted copolymer film has enhanced stability and recognition effect. Hence, the resulting sensor combines the merits of several materials and presents improved performance. Under the optimum detection conditions, it shows a wide linear range of 0.05 µM - 1 mM, a low detection limit of 20 nM, high selectivity, and excellent stability. It has been successfully applied to the detection of tetracycline in different samples.
一种分子印迹电化学发光传感器被开发用于环境和食品样品中四环素的灵敏检测。该传感器使用离子液体(即 [APMIM]Br)修饰的石墨烯-碳纳米管复合材料(GMI)作为基底,双层核壳结构的金属-有机骨架 NH-UiO-66@ZIF-8(NUZ)负载联吡啶钌(NUZ@Ru)作为发光材料,以及邻苯二胺和对苯二酚的分子印迹共聚物作为识别元件。离子液体修饰的石墨烯-碳纳米管复合材料具有良好的三维结构、高比表面积和良好的亲水性;核壳结构的金属-有机骨架具有高稳定性和丰富的负载反应位点;分子印迹共聚物薄膜具有增强的稳定性和识别效果。因此,所得到的传感器结合了几种材料的优点,表现出了改进的性能。在最佳检测条件下,它呈现出 0.05 µM-1 mM 的宽线性范围、20 nM 的低检测限、高选择性和优异的稳定性。它已成功应用于不同样品中四环素的检测。