Peltonen Leena, Hirvonen Jouni, Yliruusi Jouko
Pharmaceutical Technology Division and Viikki Drug Discovery Technology Center, University of Helsinki, University of Helsinki, 00014, Finland
J Colloid Interface Sci. 2001 Aug 1;240(1):272-276. doi: 10.1006/jcis.2001.7612.
The interfacial tension of four sorbitan surfactants (Span 20, sorbitan monolaurate; Span 40, sorbitan monopalmitate; Span 60, sorbitan monostearate; and Span 80, sorbitan monooleate) was determined at the water-oil interface. Seven straight-chained hydrocarbons from pentane to dodecane were used as an oil phase. From the interfacial tension measurements the following values were calculated: critical micelle concentration (cmc), the interfacial tension at the cmc (gamma(cmc)), surface pressure at the cmc (pi(cmc)), area per molecule at the cmc (A(cmc)), standard free energy of micellization (DeltaG degrees (mic)), and standard free energy of adsorption (DeltaG degrees (ad)). The shorter chained Span 20 and unsaturated Span 80 had higher cmc values and Span 80 had a larger molecular area than the other surfactants. With the same oil phase, differences between pi(cmc) values of the four sorbitan monoesters were small, but the gamma(cmc) was slightly lowered as the hydrophobicity of the surfactant was increased. DeltaG degrees (mic) was less negative for Span 20 and the DeltaG degrees (ad) value was slightly more negative for Span 80. The effect of the oil phase was obvious. Increasing the hydrocarbon chain length of the oil phase increased gamma(cmc) and cmc values while pi(cmc) and A(cmc) were decreased. As the length of the hydrocarbon chain of the oil phase was increased, DeltaG degrees (mic) and DeltaG degrees (ad) became less negative, which means a less spontaneous reaction. Copyright 2001 Academic Press.
测定了四种脱水山梨醇表面活性剂(司盘20,脱水山梨醇单月桂酸酯;司盘40,脱水山梨醇单棕榈酸酯;司盘60,脱水山梨醇单硬脂酸酯;司盘80,脱水山梨醇单油酸酯)在水-油界面的界面张力。使用了七种从戊烷到十二烷的直链烃作为油相。根据界面张力测量结果计算出以下数值:临界胶束浓度(cmc)、cmc时的界面张力(γ(cmc))、cmc时的表面压力(π(cmc))、cmc时每个分子的面积(A(cmc))、胶束化的标准自由能(ΔG°(mic))以及吸附标准自由能(ΔG°(ad))。链较短的司盘20和不饱和的司盘80具有较高的cmc值,且司盘80的分子面积比其他表面活性剂大。在相同油相条件下,四种脱水山梨醇单酯的π(cmc)值差异较小,但随着表面活性剂疏水性的增加,γ(cmc)略有降低。司盘20的ΔG°(mic)负值较小,而司盘80的ΔG°(ad)值负值略大。油相的影响很明显。增加油相烃链长度会使γ(cmc)和cmc值增加,而π(cmc)和A(cmc)降低。随着油相烃链长度的增加,ΔG°(mic)和ΔG°(ad)的负值变小,这意味着反应自发性降低。版权所有2001年学术出版社。