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二烷基链阳离子-非离子表面活性剂混合物中表面吸附与溶液相行为之间的相互作用。

Interplay between the surface adsorption and solution-phase behavior in dialkyl chain cationic-nonionic surfactant mixtures.

作者信息

Tucker I, Penfold J, Thomas R K, Tildesleyt D J

机构信息

Unilever Research and Development Laboratory, Port Sunlight, Quarry Road East, Bebington, Wirral, UK.

出版信息

Langmuir. 2009 Apr 7;25(7):3924-31. doi: 10.1021/la801302z.

Abstract

Neutron reflectivity, NR, and surface tension have been used to study the adsorption at the air-solution interface of mixtures of the dialkyl chain cationic surfactant dihexadecyl dimethyl ammonium bromide (DHDAB) and the nonionic surfactants monododecyl triethylene glycol (C12E3), monododecyl hexaethylene glycol (C12E6), and monododecyl dodecaethylene glycol (C12E12). The adsorption behavior of the surfactant mixtures with solution composition shows a marked departure from ideal mixing that is not consistent with current theories of nonideal mixing. For all three binary surfactant mixtures there is a critical composition below which the surface is totally dominated by the cationic surfactant. The onset of nonionic surfactant adsorption (expressed as a mole fraction of the nonionic surfactant) increases in composition as the ethylene oxide chain length of the nonionic cosurfactant increases from E3 to E12. Furthermore, the variation in the adsorption is strongly correlated with the variation in the phase behavior of the solution that is in equilibrium with the surface. The adsorbed amounts of DHDAB and the nonionic cosurfactants have been used to estimate the monomer concentration that is in equilibrium with the surface and are shown to be in reasonable qualitative agreement with the variation in the mixed critical aggregation concentration (cac).

摘要

中子反射率(NR)和表面张力已被用于研究二烷基链阳离子表面活性剂二己基二甲基溴化铵(DHDAB)与非离子表面活性剂单十二烷基三甘醇(C12E3)、单十二烷基六甘醇(C12E6)和单十二烷基十二甘醇(C12E12)混合物在气-溶液界面的吸附情况。表面活性剂混合物的吸附行为随溶液组成的变化明显偏离理想混合,这与当前的非理想混合理论不一致。对于所有三种二元表面活性剂混合物,都存在一个临界组成,低于该组成时,表面完全由阳离子表面活性剂主导。随着非离子共表面活性剂的环氧乙烷链长从E3增加到E12,非离子表面活性剂吸附的起始点(以非离子表面活性剂的摩尔分数表示)在组成上增加。此外,吸附的变化与与表面处于平衡状态的溶液的相行为变化密切相关。已使用DHDAB和非离子共表面活性剂的吸附量来估计与表面处于平衡状态的单体浓度,结果表明与混合临界聚集浓度(cac)的变化在合理的定性上一致。

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