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Ethylenediamine-functionalized superparamagnetic carbon nanotubes for magnetic molecularly imprinted polymer matrix solid-phase dispersion extraction of 12 fluoroquinolones in river water

机译:乙二胺官能化的超顺磁性碳纳米管用于磁性分子印迹聚合物基质固相分散萃取河水中的12种氟喹诺酮

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摘要

A novel fluoroquinolone molecularly imprinted polymer (MIP) on the surface of ethylenediamine-functionalized magnetic carbon nanotubes (EDA@Mag-CNTs-MIP) was synthesised. The properties of the EDA@Mag-CNTs-MIP were characterized by using a transmission electron microscope (TEM) and vibrating sample magnetometer (VSM). With using EDA@Mag-CNTs-MIP as the adsorbent, a simple and sensitive method based on the use of a magnetic molecularly imprinted polymer matrix solid phase dispersion extraction (Mag-MIP-MSPD) procedure combined with ultra-fast liquid chromatography-tandem quadrupole mass spectrometry (UFLC-MS/MS) was developed to determine 12 fluoroquinolones in river water. Fluoroquinolones adsorbed with EDA@Mag-CNTs-MIP could be simply and rapidly isolated through a magnetic field, and the main factors, i.e., the pH value and sample volume, affecting the extraction were investigated in detail. Under optimal experimental conditions, the enhancement factor of the Mag-MIP-MSPD procedure was 100 times. The obtained results demonstrated the higher extraction capacity of EDA@Mag-CNTs-MIP with recoveries between 80.2 and 116%. The limits of quantification (LOQs) for the fluoroquinolones were between 0.26 and 1.78 ng L-1. The developed Mag-MIP-MSPD UFLC-MS/MS method had been successfully applied to sixty real samples, and it was confirmed that the EDA@Mag-CNTs-MIP was a kind of highly effective Mag-MIP-MSPD material for fluoroquinolone analyses.
机译:在乙二胺功能化的磁性碳纳米管(EDA @ Mag-CNTs-MIP)表面合成了一种新型的氟喹诺酮分子印迹聚合物(MIP)。通过使用透射电子显微镜(TEM)和振动样品磁力计(VSM)表征了EDA @ Mag-CNTs-MIP的特性。通过使用EDA @ Mag-CNTs-MIP作为吸附剂,一种简单而灵敏的方法基于磁分子印迹聚合物基质固相分散萃取(Mag-MIP-MSPD)程序与超快速液相色谱串联开发了四极质谱(UFLC-MS / MS)来测定河水中的12种氟喹诺酮类。可以通过磁场简单,快速地分离EDA @ Mag-CNTs-MIP吸附的氟喹诺酮类化合物,并详细研究了影响萃取的主要因素,即pH值和样品量。在最佳实验条件下,Mag-MIP-MSPD程序的增强因子是100倍。获得的结果表明,EDA @ Mag-CNTs-MIP的提取能力更高,回收率在80.2%至116%之间。氟喹诺酮类药物的定量限(LOQ)在0.26至1.78 ng L-1之间。开发的Mag-MIP-MSPD UFLC-MS / MS方法已成功应用于六十个真实样品,并证实EDA @ Mag-CNTs-MIP是一种用于氟喹诺酮分析的高效Mag-MIP-MSPD材料。 。

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