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聚丙稀酸酯纤维-水分配系数的多参数线性自由能模型用于评估固相微萃取的效率。

Polyparameter linear free energy models for polyacrylate fiber-water partition coefficients to evaluate the efficiency of solid-phase microextraction.

机构信息

Department of Analytical Environmental Chemistry, UFZ-Helmholtz Centre for Environmental Research, Leipzig, Germany.

出版信息

Anal Chem. 2011 Feb 15;83(4):1394-400. doi: 10.1021/ac102868e. Epub 2011 Jan 25.

Abstract

The fiber-water partition coefficient, K(fw), is decisive for performance of solid-phase microextraction (SPME) techniques in organic chemical analyses. In this study, polyacrylate (PA)-coated fiber was evaluated for its K(fw) values toward diverse neutral organic compounds. Literature K(fw) data were thoroughly evaluated, and additional K(fw) values for 69 compounds were measured in phosphate-buffered saline (PBS) solution at 37 °C. These K(fw) data, spanning over 6 orders of magnitude, were used to construct polyparameter linear free energy relationship (PP-LFER) models. The PP-LFER models fit well to the data with a standard deviation of 0.15-0.23 log units. Additional experiments indicated that the differences in temperature (25 vs 37 °C), electrolyte concentrations (pure water vs PBS), and conditioning methods (heat vs methanol) had only minor influences (<0.3 log units) on K(fw). Using the established PP-LFERs, the SPME extraction efficiency of PA coating toward compounds of differing polarity was evaluated in comparison to poly(dimethylsiloxane) (PDMS) coating. PA exhibited higher extraction capacities for H-bond donor compounds (e.g., phenols, anilines, amides, and many drugs and pesticides) with the estimated K(fw) values being 1-4 log units higher than those of PDMS. Also, PA was shown to be more efficient than PDMS for hydrophobic aromatic compounds.

摘要

纤维-水分配系数 K(fw) 对固相微萃取 (SPME) 技术在有机化学分析中的性能起着决定性作用。在本研究中,评估了聚丙烯酸酯 (PA)-涂层纤维对不同中性有机化合物的 K(fw) 值。彻底评估了文献中的 K(fw) 数据,并在 37°C 的磷酸盐缓冲盐水 (PBS) 溶液中测量了 69 种化合物的额外 K(fw) 值。这些 K(fw) 值跨越了 6 个数量级,用于构建多参数线性自由能关系 (PP-LFER) 模型。PP-LFER 模型与数据拟合良好,标准偏差为 0.15-0.23 对数单位。额外的实验表明,温度(25°C 与 37°C)、电解质浓度(纯水与 PBS)和调节方法(加热与甲醇)的差异对 K(fw) 的影响较小(<0.3 对数单位)。使用建立的 PP-LFER,评估了 PA 涂层相对于 PDMS 涂层对不同极性化合物的 SPME 萃取效率。PA 对氢键供体化合物(如酚类、苯胺类、酰胺类以及许多药物和农药)具有更高的萃取能力,其估计的 K(fw) 值比 PDMS 高 1-4 对数单位。此外,PA 对疏水性芳香族化合物的萃取效率高于 PDMS。

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