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Use of gemini surfactants as semipermanent capillary coatings in aqueous-organic solvents for capillary electrophoretic separation of inorganic anions

机译:双子表面活性剂在水性有机溶剂中作为半永久性毛细管涂料的应用,用于毛细管电泳分离无机阴离子

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This paper proposes a new method for CE separation of inorganic anions based on the use of gemini surfactants as capillary coatings in mixed aqueous-organic solvents. The semipermanent gemini surfactant coatings were facilely prepared by rinsing the capillary with 18-s-18 solutions; they can keep be stable during the electrophoretic runs without surfactants in buffer. The coatings showed a good tolerance of methanol (MeOH) or ACN, e.g. at pH 8.0 and with 40% v/v MeOH or ACN, the EOF magnitude after 60 min of continuous electrokinetic rinsing only decreased by 2.9 or 6.0%, respectively. The coatings were successfully applied to the separation of inorganic anions. Adding organic solvents in buffer can effectively improve the resolution and efficiencies; however, it remarkably prolonged the analysis time due to the suppression of EOF. Interestingly, varying the spacer length of the gemini surfactants can also modulate (improve) the resolution but without any sacrifice of analysis time. This benefit was resulted from the unique chemical structures of gemini surfactants because it introduced a new variable, i.e. the spacer length, to the separation mechanism.
机译:本文提出了一种新的CE分离无机阴离子的方法,该方法是基于双子表面活性剂作为混合水性有机溶剂中的毛细管涂层。通过用18-s-18溶液冲洗毛细管,可以轻松制备半永久性双子表面活性剂涂层。它们可以在电泳过程中保持稳定,而无需在缓冲液中使用表面活性剂。涂层显示出对甲醇(MeOH)或乙腈(例如ACN)的良好耐受性。在pH 8.0和40%v / v MeOH或ACN的条件下,连续电动漂洗60分钟后的EOF值仅分别降低了2.9%或6.0%。该涂料已成功应用于无机阴离子的分离。在缓冲液中加入有机溶剂可以有效提高分离度和效率。但是,由于抑制了EOF,大大延长了分析时间。有趣的是,改变双子表面活性剂的间隔物长度也可以调节(提高)分离度,但不会牺牲分析时间。这种好处是由于双子表面活性剂独特的化学结构所致,因为它为分离机理引入了一个新的变量,即间隔物长度。

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