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首页> 外文期刊>Analytical and bioanalytical chemistry >Selectivity enhancement for the separation of tocopherols and steroids by integration of highly ordered weak interaction sites along the polymer main chain
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Selectivity enhancement for the separation of tocopherols and steroids by integration of highly ordered weak interaction sites along the polymer main chain

机译:通过沿聚合物主链整合高度有序的弱相互作用位点,选择性增强生育酚和甾类化合物的分离

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摘要

A novel alternating copolymer-based organic phase was synthesized using a new N-substituted maleimide monomer for the development of alternating copolymergrafted silica for high-performance liquid chromatographic applications. This new monomer (DGMI) was copolymerized with octadecyl acrylate (ODA) from 3- mercaptopropyltrimethoxysilane-grafted silica to produce Sil-poly(ODA-alt-DGMI). The organic phase was characterized by the elemental analysis and the diffuse reflectance infrared Fourier transform spectroscopy. Tocopherol isomers and steroids were used as analytes for the evaluation of the chromatographic selectivity profiles of this novel stationary phase. The selectivity of this column was then compared with a polymeric ODS column and previously developed another alternating copolymer-grafted silica (without the glutamide-derived moiety) column, Sil-poly (ODA-alt-N-octadecylmaleimide). The complete baseline separation of tocopherol isomers in an isocratic mode has been achieved within 25 min with the Sil-poly(ODA-alt- DGMI). The separation of eight kinds of estrogenic steroids and corticoids has also been achieved in an isocratic mode with this column. Significant differences in separation selectivity between Sil-poly(ODA-alt-DGMI) and polymeric ODS columns were observed towards the steroids, and compared with the reference columns, a better separation profile for these analytes was obtained with the Sil-poly (ODA-alt-DGMI). The results of this investigation indicated that the enhancement of selectivity of Sil-poly(ODA-alt- DGMI) towards the test analytes arose from the multiple interaction mechanism such as hydrophobic effect, carbonyl-π and hydrogen-bonding interactions, and such integrated interactions originated from the addition of two amide groups in the N-substituted maleimide monomer.
机译:使用新型的N-取代的马来酰亚胺单体合成了一种新型的基于交替共聚物的有机相,用于开发交替共聚物接枝的二氧化硅,以用于高效液相色谱应用。将这种新的单体(DGMI)与3-巯基丙基三甲氧基硅烷接枝的二氧化硅的丙烯酸十八烷基酯(ODA)进行共聚,制得Sil-poly(ODA-alt-DGMI)。通过元素分析和漫反射红外傅里叶变换光谱对有机相进行表征。生育酚异构体和类固醇用作分析物,用于评估这种新型固定相的色谱选择性。然后将该色谱柱的选择性与聚合ODS色谱柱进行比较,并预先开发了另一种交替共聚物接枝的二氧化硅(不含谷氨酰胺衍生的部分)色谱柱Sil-poly(ODA-alt-N-十八烷基马来酰亚胺)。使用Sil-poly(ODA-alt-DGMI),可以在25分钟内完成等度模式下生育酚异构体的完全基线分离。该色谱柱也以等度模式分离了八种雌激素和皮质类固醇。在聚类化合物上,Sil-poly(ODA-alt-DGMI)和聚合物ODS色谱柱之间的分离选择性存在显着差异,与参比色谱柱相比,使用Sil-poly(ODA-alt-DGMI-ODMI-DGMI alt-DGMI)。这项研究的结果表明,Sil-poly(ODA-alt-DGMI)对测试分析物的选择性的提高是由于多种相互作用机理引起的,例如疏水作用,羰基-π和氢键相互作用以及这种综合相互作用。源于在N-取代的马来酰亚胺单体中添加两个酰胺基。

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