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首页> 外文期刊>Microchemical Journal: Devoted to the Application of Microtechniques in all Branches of Science >Experimental and molecular docking study on graphene/Fe3O4 composites as a sorbent for magnetic solid-phase extraction of seven imidazole antifungals in environmental water samples prior to LC-MS/MS for enantiomeric analysis
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Experimental and molecular docking study on graphene/Fe3O4 composites as a sorbent for magnetic solid-phase extraction of seven imidazole antifungals in environmental water samples prior to LC-MS/MS for enantiomeric analysis

机译:石墨烯/ Fe3O4复合材料的实验和分子对接研究作为LC-MS / MS进行对映体分析之前的环境水样中七咪唑抗真菌磁性固相提取的吸附剂

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摘要

In this work, a graphene modified by Fe3O4 nanoparticles (G-Fe3O4) was prepared and characterized. Seven chiral imidazole antifungals, including ketoconazole, econazole, miconazole, butoconazole, sertaconazole, fenticonazole and isoconazole were extracted from three environmental water samples by magnetic solid-phase extraction based on the G-Fe3O4, followed by enantiomeric analysis on a Chiralcel OJ-RH column coupled with a triple quadrupole mass spectrometry to evaluate their possible stereoselectivity during the degradation process occurring in the environment. Method detection and quantification limits for all the enantiomers were 0.11-0.32 ng/L and 0.28-0.67 ng/L, respectively. Satisfactory recovery (70-92%), good intra-day precision (RSD 3.1-12.0%) and inter-day precision (RSD 3.0-10.1%) were also obtained. Furthermore, the possible interactions between the analyte and graphene, such as electrostatic attraction, cation-pi interaction, hydrophobic interaction and pi-pi stacking were discussed by combining the experiment results and molecular docking study, which provided a new insight into the adsorption mechanism of analytes on graphene.
机译:在这项工作中,制备了由Fe 3 O 4纳米颗粒(G-Fe 3 O 4)改性的石墨烯并表征。通过基于G-Fe3O4的磁性固相萃取从三种环境水样中提取七种手性咪唑抗真菌,包括酮康唑,官唑,咪康唑,丁二烷唑,苯甲唑,苯唑,苯唑,苯唑,芬康唑和异壬唑,然后对Chiralcel OJ-Rh柱进行对映体分析与三重四极杆质谱相结合,以在环境中发生的降解过程中评估它们可能的立体选择性。所有对映体的方法检测和定量限制分别为0.11-0.32 ng / L和0.28-0.67ng / L.令人满意的恢复(70-92%),良好的日期精度(RSD 3.1-12.0%)也获得了日常精度(RSD 3.0-10.1%)。此外,通过组合实验结果和分子对接研究,讨论了分析物和石墨烯之间的可能相互作用,例如静电吸引,阳离子-PI相互作用,疏水性相互作用和PI-PI堆叠,这提供了对吸附机制的新洞察石墨烯的分析物。

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