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Incorporation and differential reactivity of anions in zwitterionic sulfobetaine micelles

机译:在两性离子磺基谷胶束中的阴离子掺入和差异反应性

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Zwitterionic surfactants, such as sulfobetaines and carboxybetaines, are formally neutral, but their micelles incorporate anions owing to the higher charge density of the cationic ammonium inner surface, compared with that of the anionic sulfonate, or carboxylate, surface and to anion-specific interactions. In this work, we used the following sulfobetaines: N-decyl-, N-tetradecyl- and N-hexadecyl-N,N-dimethylammonio-1-propanesulfonate, N-tetradecyl-N,N-diethyl-, N-tetradecyl-N,N-dipropyl- and N-tetradecyl-N,N-dibutylammonio-1-propanesulfonate and N-tetradecyl-N,N-dimethyl-, N-tetradecyl-N,N-diethyl- and N-tetradecyl-N,N-dipropylammonio-1-butanesulfonate. We have determined the partitioning of bromide and perchlorate ions between water and micelles in terms of anions incorporated in the interfacial region of the micelles as a function of concentrations of added ions in the bulk solution. The concentrations of free and micellar-bound ions were determined by using ion-selective electrodes, in the presence and absence of sulfobetaines, at pH 9.0 (borate buffer). The incorporation of anions into zwitterionic micelles fits Langmuir adsorption isotherms, and the results are related to changes in the micellar surface potential. The incorporation of perchlorate is in the range 15-30% of the concentration of micellized surfactant for the different sulfobetaines, and is greater than that for bromide ion (about 10%). These results fit differences in anionic reactivities and in the NMR line widths of micellar incorporated anions.
机译:双层过离子表面活性剂,例如磺基因和羧基脲,是正式的中性,但它们的胶束由于阳离子铵内表面的较高电荷密度而掺入阴离子,与阴离子磺酸盐或羧酸盐,表面和阴离子特异性相互作用相比。在这项工作中,我们使用以下磺基因:N-癸基,N-十四烯基和正己酰基-N,N-二甲基氨基噻吩-1-丙二磺酸,N-四癸基 - N,N-二乙基 - ,N-四癸基-N ,N-二丙基和N-四癸基 - N,N-二丁基氨基酮-1-丙二酸丁酯和N-四甲基-N,N-二甲基 - ,N-四癸基-N,N-二乙基 - 和N-四癸基-N,N-二丙基胺-1-丁磺酸。我们已经确定了在胶束界面在胶束界面区域中的阴离子之间的水和胶束之间的溴化物和高氯酸盐离子作为本体溶液中添加离子的浓度的函数。通过使用离子选择性电极在pH9.0(硼酸盐缓冲液)的情况下使用离子选择性电极测定游离和胶束结合离子的浓度。将阴离子掺入两性离子胶束配合Langmuir吸附等温线,结果与胶束表面电位的变化有关。加氯酸盐的掺入在胶束表面活性剂的浓度的15-30%的范围内,并且大于溴离子(约10%)的胶束化表面活性剂的浓度。这些结果适应阴离子反应性和胶束掺入阴离子的NMR线宽。

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