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高度掺杂石墨烯的聚己内酯纳米纤维搅拌圆盘用于直接预富集环境水体中的污染物。

Stirred discs from polycaprolactone nanofibers highly doped with graphene for straightforward preconcentration of pollutants in environmental waters.

作者信息

Lhotská Ivona, Háková Martina, Erben Jakub, Chvojka Jiri, Švec František, Šatínský Dalibor

机构信息

Charles University, Faculty of Pharmacy in Hradec Králové, The Department of Analytical Chemistry, Ak. Heyrovského 1203, 500 05, Hradec Králové, Czech Republic.

Charles University, Faculty of Pharmacy in Hradec Králové, The Department of Analytical Chemistry, Ak. Heyrovského 1203, 500 05, Hradec Králové, Czech Republic.

出版信息

Talanta. 2024 Jan 1;266(Pt 1):124975. doi: 10.1016/j.talanta.2023.124975. Epub 2023 Jul 20.

Abstract

A novel sorbent for solid phase extraction (SPE) based on hybrid nanofibrous polycaprolactone containing graphene nanoparticles has been prepared. The preparation of hybrid polymer nanofibers with a very high 1:1 polymer/graphene ratio was achieved for the first time using alternating current electrospinning. The final appearance of these nanofibers was a thick porous layer that was cut into the shape of easy-to-handle extraction discs. Based on the preliminary study in which the graphene content varied, 30% graphene-doped nanofibers (w/w) exhibited the highest recoveries and enabled a significant increase in the retention of analytes, 2-25 times in comparison to PCL. The incorporation of graphene resulted in a higher surface area of 12 g/m compared to 2 g/m determined for the native polycaprolactone (PCL) nanofibers. This unique material was applied for a simple stirred disc sorptive extraction and preconcentration of trace levels of emerging organic environmental contaminants, bisphenols A, AF, AP, C, S, Z, 3-chlorophenol, and pesticides fenoxycarb, deltamethrin, and kadethrin from surface waters prior to HPLC-DAD determination. This was accomplished by stirring the unsupported nanofiber disc in a large-volume sample with RSD of five extractions of 3-15%. Recoveries yielded 87-120%, except 52% for bisphenol S due to its high polarity. Optimization of the extraction procedure included conditioning, sample volume, extraction time, and elution solvent. Our novel desorption procedure carried out in a vial used for the direct injection into the HPLC system significantly reduced sample handling and minimized potential human error.

摘要

制备了一种基于含石墨烯纳米颗粒的杂化纳米纤维聚己内酯的新型固相萃取(SPE)吸附剂。首次使用交流电静电纺丝制备了聚合物与石墨烯比例高达1:1的杂化聚合物纳米纤维。这些纳米纤维最终呈现出厚的多孔层,将其切割成易于处理的萃取盘形状。基于对石墨烯含量变化的初步研究,30%石墨烯掺杂的纳米纤维(w/w)表现出最高的回收率,并使分析物的保留率显著提高,与聚己内酯相比提高了2至25倍。与天然聚己内酯(PCL)纳米纤维测定的2 g/m²相比,石墨烯的掺入使表面积增加到12 g/m²。这种独特的材料用于简单的搅拌盘吸附萃取和预浓缩地表水痕量的新型有机环境污染物、双酚A、AF、AP、C、S、Z、3-氯酚以及农药苯氧威、溴氰菊酯和氯菊酯,然后进行HPLC-DAD测定。这是通过在大量样品中搅拌无支撑的纳米纤维盘来完成的,五次萃取的相对标准偏差为3-15%。回收率为87-120%,双酚S由于其高极性除外,回收率为52%。萃取程序的优化包括调节、样品体积、萃取时间和洗脱溶剂。我们在用于直接注入HPLC系统的小瓶中进行的新型解吸程序显著减少了样品处理,并将潜在的人为误差降至最低。

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