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Expanding the Applicability of Poly(Ionic Liquids) in Solid Phase Microextraction: Pyrrolidinium Coatings

机译:扩大聚离子液体在固相微萃取中的适用性:吡咯烷鎓涂层

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摘要

Crosslinked pyrrolidinium-based poly(ionic liquids) (Pyrr-PILs) were synthesized through a fast, simple, and solventless photopolymerization scheme, and tested as solid phase microextraction (SPME) sorbents. A series of Pyrr-PILs bearing three different alkyl side chain lengths with two, eight, and fourteen carbons was prepared, characterized, and homogeneously coated on a steel wire by using a very simple procedure. The resulting coatings showed a high thermal stability, with decomposition temperatures above 350 °C, excellent film stability, and lifetime of over 100 injections. The performance of these PIL-based SPME fibers was evaluated using a mixture of eleven organic compounds with different molar volumes and chemical functionalities (alcohols, ketones, and monoterpenes). The Pyrr-PIL fibers were obtained as dense film coatings, with 67 μm thickness, with an overall sorption increase of 90% and 55% as compared to commercial fibers of Polyacrylate (85 μm) (PA85) and Polydimethylsiloxane (7 μm) (PDMS7) coatings, respectively. A urine sample doped with the sample mixture was used to study the matrix effect and establish relative recoveries, which ranged from 60.2% to 104.1%.
机译:通过快速,简单和无溶剂的光聚合方案合成了交联的基于吡咯烷鎓的聚离子液体(Pyrr-PIL),并作为固相微萃取(SPME)吸附剂进行了测试。制备,表征,表征具有一系列具有三个不同的烷基侧链长度,具有两个,八个和十四个碳的Pyrr-PIL,并使用非常简单的方法将其均匀地涂覆在钢丝上。所得涂料显示出高的热稳定性,分解温度高于350°C,具有出色的薄膜稳定性,并且使用寿命超过100次注射。这些基于PIL的SPME纤维的性能是使用11种具有不同摩尔体积和化学官能度(醇,酮和单萜)的有机化合物的混合物进行评估的。 Pyrr-PIL纤维以致密膜涂层的形式获得,厚度为67μm,与聚丙烯酸酯(85μm)(PA85)和聚二甲基硅氧烷(7μm)(PDMS7)的商用纤维相比,总吸附增加了90%和55% )涂层。使用掺有样品混合物的尿液样品研究基质效应并建立相对回收率,其相对回收率范围为60.2%至104.1%。

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