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首页> 外文期刊>Analytical and bioanalytical chemistry >Molecularly imprinted polymers based stir bar sorptive extraction for determination of cefaclor and cefalexin in environmental water
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Molecularly imprinted polymers based stir bar sorptive extraction for determination of cefaclor and cefalexin in environmental water

机译:基于分子印迹聚合物的搅拌棒溶液测定环境水中头孢酰氟苯磺酸和髓质素

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Although stir bar sportive extraction was thought to be a highly efficiency and simple pretreatment approach, its wide application was limited by low selectivity, short service life, and relatively high cost. In order to improve the performance of the stir bar, molecular imprinted polymers and magnetic carbon nanotubes were combined in the present study. In addition, two monomers were utilized to intensify the selectivity of molecularly imprinted polymers. Fourier transform infrared spectroscopy, scanning electron microscopy, and selectivity experiments showed that the molecularly imprinted polymeric stir bar was successfully prepared. Then micro-extraction based on the obtained stir bar was coupled with HPLC for determination of trace cefaclor and cefalexin in environmental water. This approach had the advantages of stir bar sportive extraction, high selectivity of molecular imprinted polymers, and high sorption efficiency of carbon nanotubes. To utilize this pretreatment approach, pH, extraction time, stirring speed, elution solvent, and elution time were optimized. The LOD and LOQ of cefaclor were found to be 3.5 ng center dot mL(-1) and 12.0 ng center dot mL(-1), respectively; the LOD and LOQ of cefalexin were found to be 3.0 ng center dot mL(-1) and 10.0 ng center dot mL(-1), respectively. The recoveries of cefaclor and cefalexin were 86.5 similar to 98.6%. The within-run precision and between-run precision were acceptable (relative standard deviation < 7%). Even when utilized in more than 14 cycles, the performance of the stir bar did not decrease dramatically. This demonstrated that the molecularly imprinted polymeric stir bar based micro-extraction was a convenient, efficient, low-cost, and a specific method for enrichment of cefaclor and cefalexin in environmental samples.
机译:虽然搅拌棒嬉戏提取被认为是一种高效和简单的预处理方法,但其广泛的应用受到低选择性,使用寿命短的较低的限制。为了改善搅拌棒的性能,将分子印迹聚合物和磁性碳纳米管组合在本研究中。另外,使用两种单体来加强分子印迹聚合物的选择性。傅里叶变换红外光谱,扫描电子显微镜和选择性实验表明,成功制备了分子印迹的聚合物搅拌棒。然后基于所得搅拌棒的微萃取与HPLC相偶联,用于测定痕量头孢酰胺和环盐蛋白在环境水中。这种方法具有搅拌棒素嬉戏提取的优点,分子印迹聚合物的高选择性,以及碳纳米管的高吸附效率。为了利用该预处理方法,优化了pH,提取时间,搅拌速度,洗脱溶剂和洗脱时间。将Cefaclor的LOD和LOQ发现分别为3.5 ng中心点M1(-1)和12.0 ng中心点M1(-1);将植物和LOQ的Cefalexin发现为3.0 ng中心点M1(-1)和10.0ng中心点M1(-1)。头孢克勒和头孢甲蛋白的回收率为86.5,类似于98.6%。在运行内的精度和运行之间的精度是可接受的(相对标准偏差<7%)。即使在超过14个循环中使用时,搅拌棒的性能也没有显着降低。这证明了基于分子印迹的聚合物搅拌棒的微萃取是一种方便,有效,低成本,以及在环境样品中富集Cefaclor和Cefalexin的特定方法。

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