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基于离子液体的交联共聚吸附剂用于顶空固相微萃取极性醇类。

Ionic liquids-based crosslinked copolymer sorbents for headspace solid-phase microextraction of polar alcohols.

机构信息

Key Laboratory of Chemistry of Northwestern Plant Resources, CAS/Key Laboratory for Natural Medicine of Gansu Province, Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences, Lanzhou 730000, China.

出版信息

J Chromatogr A. 2012 Jul 6;1245:32-8. doi: 10.1016/j.chroma.2012.05.026. Epub 2012 May 12.

Abstract

Halogen-based polymeric ionic liquid (PIL) fibers, which have proved efficient for solid-phase microextraction (SPME) of polar compounds, were with very limited fiber lifetimes. In this work, a novel crosslinked PIL sorbent with satisfactory stability and durability was prepared in situ via crosslinking polymerization processes on microstructured-silver coated stainless steel wire. 1,1'-(1,6-Hexanediyl)bis(1-vinylimidazolium) bibromide ionic liquid was synthesized and used as the crosslinking agent, with 1-vinyl-3-octylimidazolium bromide as monomer. Extraction properties of the fiber for polar alcohols in polar aqueous matrix were examined using headspace SPME (HS-SPME) coupled to gas chromatography-flame ionization detection (GC-FID). Under the optimized extraction and desorption conditions, the established method exhibited high extraction capacity. Wide linear ranges were obtained with correlation coefficients (R) ranging from 0.9947 to 0.9999. Limits of detection were in the range of 0.5-20 μg L⁻¹. Compared with the non-crosslinked PIL fiber, the proposed crosslinked PIL fiber was with higher thermal stability and durability and longer lifetime. Four different liquor beverages were analyzed as real samples and good results were obtained.

摘要

基于卤素的聚合离子液体(PIL)纤维已被证明对极性化合物的固相微萃取(SPME)非常有效,但纤维的使用寿命非常有限。本工作通过在微结构化银丝上的交联聚合过程原位制备了一种新型交联 PIL 吸附剂,具有令人满意的稳定性和耐用性。合成了 1,1'-(1,6-己二基)双(1-乙烯基咪唑)双溴化物离子液体,并将其用作交联剂,单体为 1-乙烯基-3-辛基咪唑溴化物。采用顶空 SPME(HS-SPME)与气相色谱-火焰离子化检测(GC-FID)联用,考察了纤维对极性醇在极性水基质中的萃取性能。在优化的萃取和解吸条件下,该方法表现出高的萃取容量。线性范围较宽,相关系数(R)范围为 0.9947 至 0.9999。检出限在 0.5-20 μg L⁻¹范围内。与非交联 PIL 纤维相比,所提出的交联 PIL 纤维具有更高的热稳定性和耐用性,使用寿命更长。分析了四种不同的酒类饮料作为实际样品,得到了良好的结果。

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