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New Highly Fluorinated Polymers: Modifiers of Chromatographic and Electrophoretic Systems

机译:新型高氟化聚合物:色谱和电泳系统的改性剂

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A set of four highly fluorinated copolymers that differ from each other in the length of perfluorinated pendants to the fluorine-containing polymer backbone chain, charge, and acid-base functions of terminal groups (sulfonate, carboxylate, sulfamide, and N,N-diethylcarbamide) is obtained for the first time. Packed columns for gas-liquid chromatography (GLC) are prepared on the basis of synthesized fluoropolymers as stationary phases. Evaluation of main types of interactions between fluoropolymers and analytes of different nature and relative polarity of phases obtained is performed using McReynolds constants and Kovats retention indices. It is found that, under the conditions of capillary electrophoresis (CE) and micellar electrokinetic chromatography (MEKC), the influence of fluoropolymer as a component of supporting electrolyte on the increase in the efficiency (by two to three times) and separation selectivity of neutral analytes (steroid hormones) is due to two reasons: modification of walls of quartz capillary by the polymer and formation of a pseudostationary phase. Under the conditions of high-performance thin-layer chromatography (HPTLC) the introduction of highly fluorinated polymers into eluent composition results in the increase in the efficiency by two to four times in the determination of amino acids and water-soluble vitamins.
机译:一组四种高度氟化的共聚物,它们在含氟聚合物主链的全氟化侧基的长度,末端基团的电荷和酸碱功能(磺酸盐,羧酸盐,磺酰胺和N,N-二乙基氨基甲酰胺)上互不相同)是首次获得。在合成的含氟聚合物作为固定相的基础上,制备了用于气相色谱的填充柱。使用McReynolds常数和Kovats保留指数对含氟聚合物与不同性质的分析物之间的主要相互作用类型以及获得的相的相对极性进行评估。结果发现,在毛细管电泳(CE)和胶束电动色谱(MEKC)的条件下,含氟聚合物作为支持电解质的成分对中性化合物的效率(增加2-3倍)和分离选择性的影响分析物(类固醇激素)的原因有两个:聚合物对石英毛细管壁的修饰和伪平稳相的形成。在高效薄层色谱(HPTLC)的条件下,将高度氟化的聚合物引入洗脱液组合物中,可使氨基酸和水溶性维生素的测定效率提高2至4倍。

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