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表面活性剂抗衡离子和有机改性剂对电动色谱中表面活性剂囊泡性质的影响。

Effect of surfactant counterion and organic modifier on the properties of surfactant vesicles in electrokinetic chromatography.

作者信息

Schuster Stephanie A, Foley Joe P

机构信息

Department of Chemistry, Drexel University, Philadelphia, PA 19104, USA.

出版信息

J Sep Sci. 2005 Aug;28(12):1399-408. doi: 10.1002/jssc.200500208.

Abstract

Counterion and organic modifier are two parameters in EKC that can be varied in order to obtain improved solubility, selectivity, and efficiency. The effect of changing surfactant counterion and/or organic modifier on the chromatographic and electrophoretic properties of cetyltrimethylammonium bromide (CTAB)/sodium octyl sulfate (SOS) vesicles is examined in EKC. The vesicles are prepared in a 1:3.66 cationic/ anionic mole ratio for a total surfactant concentration of 69 mM. The cationic CTAB is replaced by cetyltrimethylammonium chloride (CTAC) and the first use of CTAC/SOS vesicles is reported. The mean diameter of the CTAC/SOS vesicles is 96 nm while that of the CTAB/SOS vesicles is 85 nm. A class I modifier (2-amino-1-butanol) and a class II modifier (acetonitrile) have similar effects on the EOF, elution range, methylene selectivity, and the efficiency of the CTAB/SOS vesicles and the CTAC/SOS vesicles. Upon addition of 10% ACN, there is roughly a 10-fold increase in the efficiency of heptanophenone, a model hydrophobic compound, compared to the efficiency using unmodified vesicles. Linear free energy relationship (LFER) analysis using the Abraham solvation model is employed to characterize solute-vesicle interactions. The results suggest that organic modifier-vesicle interactions depend somewhat on the counterion.

摘要

抗衡离子和有机改性剂是毛细管胶束电动色谱(EKC)中的两个参数,可以对其进行改变以提高溶解度、选择性和效率。本文研究了在EKC中改变表面活性剂抗衡离子和/或有机改性剂对十六烷基三甲基溴化铵(CTAB)/辛基硫酸钠(SOS)囊泡的色谱和电泳性质的影响。囊泡按阳离子/阴离子摩尔比1:3.66制备,表面活性剂总浓度为69 mM。用十六烷基三甲基氯化铵(CTAC)取代阳离子CTAB,并首次报道了CTAC/SOS囊泡的使用。CTAC/SOS囊泡的平均直径为96 nm,而CTAB/SOS囊泡的平均直径为85 nm。I类改性剂(2-氨基-1-丁醇)和II类改性剂(乙腈)对CTAB/SOS囊泡和CTAC/SOS囊泡的电渗流、洗脱范围、亚甲基选择性和效率具有相似的影响。加入10%乙腈后,与未改性囊泡相比,模型疏水化合物庚苯酮的效率大约提高了10倍。使用亚伯拉罕溶剂化模型进行线性自由能关系(LFER)分析,以表征溶质-囊泡相互作用。结果表明,有机改性剂-囊泡相互作用在一定程度上取决于抗衡离子。

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