Fujian Provincial Key Laboratory for Coastal Ecology and Environmental Studies, Fujian Key Laboratory of Coastal Pollution Prevention and Control, College of the Environment and Ecology, Xiamen University, Xiamen, P. R. China.
J Sep Sci. 2023 Aug;46(16):e2300250. doi: 10.1002/jssc.202300250. Epub 2023 Jun 25.
Efficient enrichment is a challenging and indispensable step in the quantification of polar synthetic auxins in complex samples. In the current study, a new magnetic adsorbent based on polymeric ionic liquid/aminated carbon nanotube composite was fabricated with a one-pot precipitation copolymerization strategy and employed as the extraction phase of magnetic solid phase extraction of synthetic auxins. Various characterization techniques were utilized to inspect the morphology, structure, magnetic property, and functional groups of the prepared adsorbent. Under the optimal conditions, the obtained adsorbent displayed satisfactory capture performance towards studied auxins through multiple interactions. Adsorption studies evidenced that the adsorption procedure of the developed method towards analytes was fit for the Freundlich adsorption model and pseudo-second-order kinetics. Combining with high-performance liquid chromatography, sensitive and reliable method for the identification and quantification of trace synthetic auxins in environmental water and fruit juice samples was developed. The obtained limits of detection for water and fruit juice samples located in the ranges of 0.0059-0.013 and 0.018-0.031 μg/L, respectively. Recoveries in actual samples with different fortified contents varied from 82.2% to 117%, with satisfactory reproducibility. The results will evidence that the introduced extraction technique is a useful alternative for the entrapment of trace synthetic auxins from complex samples.
高效富集是对复杂样品中极性合成生长素进行定量分析的挑战性和不可或缺的步骤。在本研究中,采用一锅沉淀共聚策略制备了一种基于聚合离子液体/胺化碳纳米管复合材料的新型磁性吸附剂,并将其用作合成生长素磁性固相萃取的萃取相。利用各种表征技术对制备的吸附剂的形貌、结构、磁性能和官能团进行了检查。在最佳条件下,所得吸附剂通过多种相互作用对研究中的生长素表现出令人满意的捕获性能。吸附研究表明,开发方法对分析物的吸附过程适合 Freundlich 吸附模型和准二级动力学。结合高效液相色谱法,开发了一种用于环境水样和果汁样品中痕量合成生长素的鉴定和定量的灵敏可靠方法。水样和果汁样品的检出限分别为 0.0059-0.013 和 0.018-0.031μg/L。不同加标含量的实际样品的回收率在 82.2%-117%之间,重现性良好。结果将证明,所介绍的萃取技术是从复杂样品中捕获痕量合成生长素的一种有用替代方法。