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首页> 外文期刊>Analytica chimica acta >Chemical immobilization of crosslinked polymeric ionic liquids on nitinol wires produces highly robust sorbent coatings for solid-phase microextraction
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Chemical immobilization of crosslinked polymeric ionic liquids on nitinol wires produces highly robust sorbent coatings for solid-phase microextraction

机译:将交联的聚合物离子液体化学固定在镍钛合金丝上可产生用于固相微萃取的高度坚固的吸附剂涂层

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摘要

Super elastic nitinol (NiTi) wires were exploited as highly robust supports for three distinct crosslinked polymeric ionic liquid (PIL)-based coatings in solid-phase microextraction (SPME). The oxidation of NiTi wires in a boiling (30%w/w) H2O2 solution and subsequent derivatization in vinyltrimethoxysilane (VTMS) allowed for vinyl moieties to be appended to the surface of the support. UV-initiated on-fiber copolymerization of the vinyl-substituted NiTi support with monocationic ionic liquid (IL) monomers and dicationic IL crosslinkers produced a crosslinked PIL-based network that was covalently attached to the NiTi wire. This alteration alleviated receding of the coating from the support, which was observed for an analogous crosslinked PIL applied on unmodified NiTi wires. A series of demanding extraction conditions, including extreme pH, pre-exposure to pure organic solvents, and high temperatures, were applied to investigate the versatility and robustness of the fibers. Acceptable precision of the model analytes was obtained for all fibers under these conditions. Method validation by examining the relative recovery of a homologous group of phthalate esters (PAEs) was performed in drip-brewed coffee (maintained at 60 °C) by direct immersion SPME. Acceptable recoveries were obtained for most PAEs in the part-per-billion level, even in this exceedingly harsh and complex matrix.
机译:超高弹性镍钛合金(NiTi)线被用作高固相支持物,用于固相微萃取(SPME)中的三种不同的交联聚合物离子液体(PIL)基涂料。 NiTi丝在沸腾的(30%w / w)H2O2溶液中的氧化,以及随后在乙烯基三甲氧基硅烷(VTMS)中的衍生化,可将乙烯基部分附着到载体的表面。乙烯基取代的NiTi载体与单阳离子离子液体(IL)单体和专用的IL交联剂的UV引发的纤维上共聚产生了交联的基于PIL的网络,该网络共价连接到NiTi线上。这种改变减轻了涂层从载体上的退缩,这是在未改性的NiTi丝上施加类似的交联PIL所观察到的。一系列苛刻的萃取条件,包括极端的pH值,预先暴露于纯有机溶剂中以及高温,被用于研究纤维的多功能性和坚固性。在这些条件下,所有纤维的模型分析物的精度都可以接受。通过直接浸入SPME在滴煮的咖啡(保持60°C)中检查邻苯二甲酸酯(PAEs)同系基团的相对回收率进行方法验证。即使在这种极其苛刻和复杂的矩阵中,大多数PAE的回收率也达到了十亿分之几。

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