首页> 外文期刊>Chromatographia >Role of counteranions in sol-gel-derived alkoxyl-functionalized ionic-liquid-based organic-inorganic hybrid coatings for SPME
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Role of counteranions in sol-gel-derived alkoxyl-functionalized ionic-liquid-based organic-inorganic hybrid coatings for SPME

机译:溶胶 - 凝胶衍生的烷氧基官能化离子液 - 液 - 液 - 液 - 液 - 液 - 液体 - 无机杂交涂层的作用

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摘要

Three alkoxyl-functionalized ionic liquids, 1-(3-triethoxysilyl propyl)-3-methyl imidazolium hexafluorophosphate (TESPMIM[PF_6]), 1-(3-triethoxysilyl propyl)- 3-methyl imidazolium tetrafluoroborate (TESPMIM[BF_4]), and 1-(3-triethoxysilyl propyl)-3-methyl imidazolium bis (trifluoromethanesulfonyl)imide (TESPMIM[N(SO_2CF_3)_2]), were synthesized and used as selective coating materials to prepare chemically bonded ionic-liquid-based organic- inorganic hybrid solid-phase microextraction (SPME) fibers by sol-gel technology. A possible mechanism of the sol-gel process is proposed, and the successful binding of ionic liquids to the formed silica substrate was confirmed by Fourier- transform infrared spectroscopy (FT-IR). These ionicliquid- based sol-gel coatings have porous surface structure, high thermal stability, strong solvent resistance, wide pH application range, good coating preparation reproducibility, special selectivity, and extraction efficiency for both polar and nonpolar compounds, such as phenolic environmental estrogens, fatty acids, aromatic amines, alcohols, phthalate esters, and polycyclic aromatic hydrocarbons. The TESPMIM[PF_6]- and TESPMIM[BF_4]-coated fibers have much lower thermal stability (to 300 and 285 °C, respectively) than TESPMIM[N(SO_2CF_3)_2]-coated fiber (to 454 °C). However, the selectivity of these two fibers is higher towards strong polar analytes, while lower towards medium polar or nonpolar analytes compared with TESPMIM[N(SO_2CF_3)_2]- based fiber. This could be explained by the fact that different counteranions in ionic liquid structures have different steric hindrance, nucleophilicity, hydrophobicity, and ability to formhydrogen bonds, resulting in significant difference in the characteristics of the ionic-liquid-based SPME fibers, such as the surface morphology, thermal stability, selective extraction ability, etc. This work demonstrates that the performance of the ionic-liquid-based coatings can be simply tuned by changing the counteranions incorporated into the ionic liquid structures.
机译:三种烷氧基官能化离子液体,1-(3-三乙氧基甲硅烷基丙基)-3-甲基咪唑庚烷(Tespmim [PF_6]),1-(3-三乙氧基甲硅烷基) - 3-甲基咪唑鎓四氟硼酸盐(Tespmim [Bf_4]),和合成1-(3-三乙氧基甲硅烷基)-3-甲基咪唑酰基(三氟甲磺酰基)酰亚胺(Tespmim [N(SO_2CF_3)_2])并用作选择性涂料,制备化学键合的离子液 - 液 - 无机杂种溶胶 - 凝胶技术的固相微萃取(SPME)纤维。提出了一种可能的溶胶 - 凝胶工艺的机制,通过傅里叶 - 转化红外光谱(FT-IR)确认离子液体与所形成的二氧化硅底物的成功结合。基于离子丙基丙基硅酸基溶胶 - 凝胶涂层具有多孔的表面结构,高热稳定性,强耐溶剂性,pH值宽,涂层制备再现性良好,特殊的选择性,以及极性和非极性化合物的特殊选择性和提取效率,如酚类环境雌激素,脂肪酸,芳族胺,醇,邻苯二甲酸酯和多环芳烃。 Tespmim [PF_6] - 和Tespmim [BF_4]涂层的纤维比Tespmim [n(so_2cf_3)_2] - 涂层纤维(454°C)具有远低得多的热稳定性(分别为300和285°C)。然而,这两种纤维的选择性朝向强极性分析物较高,而与Tespmim [N(SO_2CF_3)_2]的纤维相比,朝向中等极性或非极性分析。这可以通过离子液体结构的不同抗衡性具有不同的空间阻断,亲核,疏水性和露氢键的能力来解释,导致离子 - 液体的SPME纤维的特性有显着差异,例如表面该工作表明,通过改变结合到离子液体结构的抗衡度,可以简单地调谐离子 - 液体基涂层的性能。

著录项

  • 来源
    《Chromatographia》 |2012年第24期|共13页
  • 作者单位

    Key Laboratory of Arable Land Conservation Ministry of Agriculture College of Resources and Environment Wuhan 430070 China;

    Key Laboratory of Arable Land Conservation Ministry of Agriculture College of Resources and Environment Wuhan 430070 China;

    Key Laboratory of Arable Land Conservation Ministry of Agriculture College of Resources and Environment Wuhan 430070 China;

    College of Science Huazhong Agricultural University Wuhan 430070 China;

    Key Laboratory of Arable Land Conservation Ministry of Agriculture College of Resources and Environment Wuhan 430070 China;

    Key Laboratory of Arable Land Conservation Ministry of Agriculture College of Resources and Environment Wuhan 430070 China;

    Key Laboratory of Arable Land Conservation Ministry of Agriculture College of Resources and Environment Wuhan 430070 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

    Alkoxyl-functionalized ionic liquids; Gas chromatography; Ionic liquids; Sol-gel technology; Solid-phase microextraction;

    机译:烷氧基官能化离子液体;气相色谱;离子液体;溶胶 - 凝胶技术;固相微萃取;

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