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首页> 外文期刊>Chemistry - A European Journal >A Facile and Specific Approach to New Liquid Chromatography Adsorbents Obtained by Ionic Self-Assembly
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A Facile and Specific Approach to New Liquid Chromatography Adsorbents Obtained by Ionic Self-Assembly

机译:一种通过离子自组装获得的新型液相色谱吸附剂的简便方法

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A new ionic-liquid monomer, 1-vinyl-3-octadecylimidazolium bromide ([C18VIm]Br), was prepared and polymerized on porous silica particles by means of a surface-initiated radical chain-transfer reaction. Further modification for functionalization was performed through the exchange of counteranions from bromide to methyl orange (MO). Two new silica–poly(octadecylimidazolium) (Sil-PImC18) hybrid materials (Sil-PImC18-Br and Sil-PImC18-MO) were synthesized and characterized by elemental analysis, thermogravimetric analysis, diffuse reflectance infrared Fourier transform spectroscopy (DRIFT), and solid-state 13C CP/MAS NMR spectroscopy. Sil-PImC18-MO presented ultra-high shape selectivity for constrained isomers of polycyclic aromatic hydrocarbons (PAHs) both in reversed- and normal-phase HPLC when used as the stationary phase. Fundamental aspects of the molecular shape selectivity were evaluated by using Standard Reference Material (SRM) 869b; the column selectivity test mixture for liquid chromatography. The impact of this phase was also demonstrated by the separation of SRM 1647e (16 priority pollutant PAHs) and several steroid isomers. Enhanced selectivity could be explained by the highly oriented arrangement between the octadecylimidazolium chain and a rigid segment of MO. These findings may open a new window of research for the design of materials used in chromatographic supports, solid extraction, catalysis, and electrolytes by simple modifications of the counterions in the poly(ionic liquid) analogous phase.
机译:制备了一种新型的离子液体单体1-乙烯基-3-十八烷基咪唑鎓溴化物([C 18 VIm] Br),并通过表面引发的自由基链转移在多孔二氧化硅颗粒上进行了聚合。反应。通过将反阴离子从溴化物交换到甲基橙(MO),进行了进一步的官能化修饰。两种新的二氧化硅-聚十八烷基咪唑(Sil-PImC 18 )杂化材料(Sil-PImC 18 -Br和Sil-PImC 18 -通过元素分析,热重分析,漫反射红外傅里叶变换光谱法(DRIFT)和固态 13 C CP / MAS NMR光谱法合成并表征了MO)。 Sil-PImC 18 -MO在反相和正相HPLC中用作固定相时,都表现出对多环芳烃(PAHs)约束异构体的超高形状选择性。使用标准参考材料(SRM)869b评估了分子形状选择性的基本方面;液相色谱柱选择性测试混合物。 SRM 1647e(16种优先污染物PAHs)和几种类固醇异构体的分离也证明了这一阶段的影响。十八烷基咪唑鎓链与MO的刚性链段之间的高度定向排列可以解释选择性的提高。这些发现可能会为通过简单修饰聚(离子液体)类似相中的抗衡离子而设计用于色谱载体,固体萃取,催化和电解质的材料打开一个新的研究窗口。

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