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Evaluation of Fe3O4@SiO2–MOF-177 as an advantageous adsorbent for magnetic solid-phase extraction of phenols in environmental water samples

机译:评估Fe3O4 @ SiO2–MOF-177作为磁性固相萃取环境水样中酚的有利吸附剂

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Metala€“organic frameworks (MOFs), a novel class of hybrid inorganica€“organic materials, possess high surface area, good thermal stability and selectivity, and thus have great potential for use as sorbent materials. MOF-177 is attractive for its large pores, high adsorptivity and selectivity, which has rarely been used in analytical science. Herein a facile magnetization of MOF-177 for rapid magnetic solid phase extraction of phenols from environmental water samples was studied, with analysis using gas chromatography-mass spectrometry. The magnetization of MOF-177 microcrystals as well as solid-phase extraction (SPE) of phenols was achieved simultaneously by mixing MOF-177 and Fe3O4@SiO2 microparticles in the water sample under sonication. Under the optimized conditions, the developed method showed good linearity within the range of 1a€“200 ??g La?’1, low detection limits (16.8a€“208.3 ng La?’1) and quantitation limits (56.0a€“694.2 ng La?’1). The recoveries are between 83.3 and 108.7% with the spiked level of 25 ??g La?’1. The results demonstrated that the Fe3O4@SiO2a€“MOF-177 magnetic microspheres are promising sorbents in the MSPE field in environmental samples.
机译:金属有机框架(MOFs)是一类新型的杂化无机无机材料,具有较高的表面积,良好的热稳定性和选择性,因此具有用作吸附材料的巨大潜力。 MOF-177具有大孔,高吸附性和选择性的魅力,而在分析科学中却很少使用。本文研究了MOF-177的易磁化强度,用于从环境水样品中进行磁性固相快速磁性固相萃取,并使用气相色谱-质谱法进行了分析。通过在超声处理下将MOF-177和Fe3O4 @ SiO2微粒混合在水中,可以同时实现MOF-177微晶的磁化和酚的固相萃取(SPE)。在最佳条件下,所开发的方法在1a?200?g La?'1的范围内显示出良好的线性,低检测限(16.8a?208.3 ng La?'1)和定量限(56.0a?) 694.2 ng La?'1)。回收率在83.3至108.7%之间,峰值水平为25 ?? g La?-1。结果表明,Fe3O4 @ SiO2a?MOF-177磁性微球是环境样品中MSPE领域中很有希望的吸附剂。

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