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Nonionic surfactant enhanced semipermanent coatings for capillary electrophoresis of inorganic anions without use of organic additives

机译:非离子表面活性剂增强的半永久涂层,无需使用有机添加剂即可用于无机阴离子的毛细管电泳

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Separation of inorganic anions by capillary electrophoresis (CE) is usually conducted in co-electroosmotic mode due to the large electrophoretic mobilities of inorganic anions. Semipermanent surfactant coatings have been shown to be effective for CE of inorganic anions due to their strong capability of electroosmotic flow (EOF) manipulation. However, semipermanent coatings often suffer from their unsatisfactory stability. In addition, organic solvent additives are usually required to adjust the selectivity, which also aggravate the degradation of coating. In this work, a novel semipermanent coating consisting of cationic Gemini surfactant 18-10-18 and nonionic surfactant Tween 20 was developed to separate inorganic anions in CE. This coating is easy to prepare and more stable than pure Gemini coating. The introduction of nonionic surfactant in the coating not only suppresses the reversed EOF but can also adjust the selectivity of separation. Good separations of six model anions were achieved, the separation efficiency was as high as 65040-169700 plates/m and the RSDs of the migration times were less than 0.5 and 2.5% for run-to-run and day-to-day assays, respectively. Calibration curves were linear in the range of 0.05-5.0 mM; the detection limits ranged from 20 to 50 μM. More importantly, no organic solvents are required in the background buffer to achieve the satisfactory separations. This guarantees the coating stability and makes the method greener than most of other methods for CE of inorganic anions.
机译:由于无机阴离子的大的电泳迁移率,通常以共电渗模式通过毛细管电泳(CE)分离无机阴离子。半永久性表面活性剂涂层由于其强大的电渗流(EOF)操作能力,已显示出对无机阴离子的CE有效。然而,半永久性涂层经常遭受其令人满意的稳定性的困扰。另外,通常需要有机溶剂添加剂来调节选择性,这也加剧了涂层的降解。在这项工作中,开发了一种由阳离子双子表面活性剂18-10-18和非离子表面活性剂Tween 20组成的新型半永久涂层,以分离CE中的无机阴离子。该涂层比纯Gemini涂层易于制备且更稳定。在涂层中引入非离子表面活性剂不仅可以抑制反转的EOF,而且还可以调节分离的选择性。可以很好地分离六种模型阴离子,分离效率高达65040-169700板/ m,运行时间和日常分析的迁移时间的RSD分别小于0.5和2.5%,分别。校准曲线在0.05-5.0 mM范围内呈线性;检测限范围为20至50μM。更重要的是,背景缓冲液中不需要有机溶剂即可实现令人满意的分离效果。这保证了涂层的稳定性,并使该方法比大多数其他用于无机阴离子CE的方法更环保。

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