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Facile preparation of a hydrophilic magnetic hybrid nanomaterial with solid-phase extraction capability for highly efficient enrichment of phthalates in environmental water

机译:具有固相萃取能力的亲水磁性杂化纳米材料的快速制备,可高效富集环境水中的邻苯二甲酸盐

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Phthalic acid esters (PAEs) are involved in endocrine disrupting effects and have become a potential threat to human health. Thus, development of an appropriate and low-cost strategy to detect PAEs is vital and necessary. In this study, C18-functionalized magnetic graphene/polydopamine nanosheets (magG@PDA@C18) were successfully synthesized via a solvothermal reaction and self-polymerization of dopamine, followed by the fabrication of C18 groups by a silylanization method. The prepared magG@PDA@C18 possessed marvelous properties of good hydrophilicity, super magnetic responsiveness, and large surface area along with hydrophobic C18 groups; thus, magG@PDA@C18 possessed great potential for application in the magnetic solid-phase extraction (MSPE) technique. Various extraction parameters, including pH value, adsorption time, desorption time, amounts of adsorbents, and species of the eluting solvent, have been studied and optimized. Under optimal conditions, magG@PDA@C18 was applied to detect PAEs in environmental water samples and bottled water samples. The linearity varied from 50 to 8000 ng mL?1, the recovery was 91.4–98.7%, the enrichment factors and limit of detection were in the range of 69–89 and 0.05–1.5 ng mL?1, respectively, and the RSD was lower than 4.7%. The proposed material provided an approach for simple and rapid magnetic solid-phase extraction of hydrophobic compounds in environmental samples.
机译:邻苯二甲酸酯(PAE)参与内分泌干扰作用,已成为对人类健康的潜在威胁。因此,开发适当且低成本的检测PAE的策略至关重要且必要。在这项研究中,通过溶剂热反应和多巴胺的自聚合成功地合成了C18-官能化的磁性石墨烯/聚多巴胺纳米片(magG @ PDA @ C18),然后通过甲硅烷基化方法制备了C18基团。制备的magG @ PDA @ C18具有优异的亲水性,超强的磁响应性和大的表面积以及疏水性的C18基团。因此,magG @ PDA @ C18在磁固相萃取(MSPE)技术中具有广阔的应用前景。研究和优化了各种提取参数,包括pH值,吸附时间,解吸时间,吸附剂的量和洗脱溶剂的种类。在最佳条件下,magG @ PDA @ C18用于检测环境水样和瓶装水样中的PAE。线性范围从50到8000 ng mL?1,回收率为91.4–98.7%,富集因子和检出限分别在69–89和0.05–1.5 ng mL?1范围内,RSD为低于4.7%。拟议的材料提供了一种简单,快速的磁性固相萃取环境样品中疏水化合物的方法。

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