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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Synthesis of magnetic amino-functionalized microporous organic network composites for magnetic solid phase extraction of endocrine disrupting chemicals from water, beverage bottle and juice samples
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Synthesis of magnetic amino-functionalized microporous organic network composites for magnetic solid phase extraction of endocrine disrupting chemicals from water, beverage bottle and juice samples

机译:磁性氨基官能化微孔有机网络复合材料的合成磁固相萃取来自水,饮料瓶和果汁样品的内分泌扰乱化学品

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摘要

In this work, the magnetic amino-functionalized microporous organic network composites (Fe3O4@MON-NHz) were rational designed and facile synthesized for magnetic solid phase extraction (MSPE) of endocrine disrupting chemicals (EDCs), followed by their analysis with high-performance liquid chromatography. The incorporation of amino groups (hydrogen bonding sites) into hydrophobic MON-NH2 networks led to their good enrichment for four typical EDCs bisphenol A (BPA), 4-alpha-cumylphenol (4-alpha-CP), 4-tert-octylphenol (4-t-OP) and 4-nonylphenol (4-NP) relying on the pre-designed hydrogen bonding, pi-pi and hydrophobic interactions. The combination of MON-NH2 shell and magnetic Fe3O4 core provided a fast extraction of BPA, 4-a-CP, 4-t-OP and 4-NP from matrix solution. Under the optimal conditions, the developed method offered good linearity (R-2 > 0.990) in the range of 0.05-1000 mu g L-1, low limits of detection (S/N = 3) of 0.015-0.030 mu g L-1 and large enrichment factors of 172-197 for the studied EDCs. The maximum adsorption capacities of BPA, 4-alpha-CP, 4-t-OP and 4-NP were 124.1, 105.6, 116.6 and 117.9 mg g(-1), respectively. The Fe3O4@MON-NH2 gave larger selectivity for other polar phenols than non-polar polycyclic aromatic hydrocarbons, revealing the dominant role of hydrogen bonding interaction during the extraction and the potential of Fe3O4@MON-NH2 for other polar phenols. The developed method was successfully applied for the analysis of EDCs in water, orange juice and beverage bottle samples with the recoveries of 80.3-109.5%. These results revealed the potential of functional MONs as efficient adsorbents in sample pretreatment.
机译:在这项工作中,磁性氨基官能化的微孔有机网络复合材料(Fe3O4 @ Mon-NHz)是合理的设计,适用于内分泌造成化学物质(EDC)的磁固相萃取(MSPE),然后进行高性能分析液相色谱。将氨基(氢键位点)掺入疏水性Mon-NH2网络中,其对四种典型EDCs双酚A(BPA),4-α-枯烷烯醇(4-α-CP),4-叔辛基苯酚( 4-T-OP)和4-壬基酚(4-NP)依赖于预先设计的氢键,PI-PI和疏水相互作用。 Mon-NH2壳和磁Fe3O4核的组合提供了快速提取BPA,4-A-CP,4-T-OP和4-NP的基质溶液。在最佳条件下,开发方法提供了良好的线性度(R-2> 0.990),范围为0.05-1000 mu g l-1,低检测限率(s / n = 3)为0.015-0.030 mu g- 1且研究的EDCS的172-197的大型浓缩因子。 BPA,4-α-CP,4-T-OP和4-NP的最大吸附容量分别为124.1,105.6,116.6和117.9mg g(-1)。 Fe3O4 @ Mon-NH2比非极性多环芳烃的其他极性酚类的选择性更大,揭示了氢键相互作用在萃取过程中的主要作用以及Fe3O4 @ Mon-NH2用于其它极性酚的潜力。已成功应用于水,橙汁和饮料瓶样品中EDC的分析,回收率为80.3-109.5%。这些结果揭示了功能性蒙版作为样品预处理中有效吸附剂的潜力。

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