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纳米纤维、微纤维和新型复合纳米/微纤维聚合物作为色谱系统在线固相萃取吸附剂的比较研究。

A comparison study of nanofiber, microfiber, and new composite nano/microfiber polymers used as sorbents for on-line solid phase extraction in chromatography system.

机构信息

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

The Technical University of Liberec, The Institute for Nanomaterials, Advanced Technology, and Innovation, Studentská 1402/2, 46001, Liberec, Czech Republic.

出版信息

Anal Chim Acta. 2018 Sep 6;1023:44-52. doi: 10.1016/j.aca.2018.04.023. Epub 2018 Apr 21.

Abstract

Three different approaches has been used to obtain nano/micro fibers and their diversity and extraction properties were examined. The effect of their structure on stability in an ultra-high-performance liquid chromatography (UHPLC) system during on-line SPE procedure was monitored. Five types of various nano/micro fiber polymers were used as sorbents: polyamide 6 nanofibers, polyvinylidene difluoride nanofibers, polyethylene microfibers, and two new polycaprolactone microfiber/nanofiber and polycaprolactone microfibers/polyvinylidene difluoride nanofibers composite polymers. The fiber polymers were filled in a cartridge directly connected to the UHPLC system and tested. For each polymer, the optimal conditions of the on-line extraction were found and potential applicability on real samples was tested. The determination of ochratoxin A (OTA) in beer matrix was chosen as a case study. Relevant factors such as the mechanical and chemical stability of the nano/microfibers, filling the cartridges, fiber reusability and the possibility and the repeatability of all processes were involved in the proposed study. A new nano/micro composite sorbent consisting of polycaprolactone microfibers/polyvinylidene difluoride nanofibers was chosen as the most suitable sorbent for the on-line extraction of OTA from a beer matrix. The tested validation parameters had the value of intra-day precision lower than 1.48%, linearity in the range from 0.5 to 100 μg L with r ≥ 0.9999 for standard and matrix calibration curve, and recovery in the range 99.1-103.9% at five concentration levels. Long-term precision evaluated for 31 analyses over the period of three months did not exceed 2.9% RSD. It confirmed the column reusability and perfect stability of nano/micro composite sorbent in the presence of organic solvents and after repeated injection of a complex beer matrix.

摘要

已经使用了三种不同的方法来获得纳米/微米纤维,并对它们的多样性和提取性能进行了研究。监测了它们的结构对在线 SPE 过程中超高效液相色谱 (UHPLC) 系统稳定性的影响。使用了五种不同类型的纳米/微米纤维聚合物作为吸附剂:聚酰胺 6 纳米纤维、聚偏二氟乙烯纳米纤维、聚乙烯微纤维以及两种新型聚己内酯微纤维/纳米纤维和聚己内酯微纤维/聚偏二氟乙烯纳米纤维复合聚合物。将纤维聚合物直接填充到与 UHPLC 系统相连的筒中进行测试。对于每种聚合物,都找到了最佳的在线提取条件,并测试了其在实际样品中的潜在适用性。选择测定啤酒基质中的赭曲霉毒素 A (OTA)作为案例研究。所提出的研究涉及到相关因素,例如纳米/微米纤维的机械和化学稳定性、筒的填充、纤维的可重复使用性以及所有过程的可行性和可重复性。选择由聚己内酯微纤维/聚偏二氟乙烯纳米纤维组成的新型纳米/微米复合吸附剂作为在线提取啤酒基质中 OTA 的最适合吸附剂。所测试的验证参数的日内精密度值低于 1.48%,标准和基质校准曲线的线性范围为 0.5 至 100μg/L,r 值大于 0.9999,回收率在五个浓度水平范围内为 99.1-103.9%。在三个月的时间内进行了 31 次分析的长期精密度评估,其 RSD 不超过 2.9%。这证实了纳米/微米复合吸附剂在有机溶剂存在下和在重复注入复杂啤酒基质后的柱可重复使用性和完美稳定性。

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