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表面活性痕量杂质对低聚乙二醇单辛醚水溶液表面性质的影响

Influence of Surface-Active Trace Impurities on the Surface Properties of Aqueous Solutions of Oligoethylene Glycol Monooctyl Ethers.

作者信息

Priester T, Bartoszek M, Lunkenheimer K

机构信息

Max-Planck-Institut für Kolloid- und Grenzflächenforschung, Institut für Angewandte Chemie Berlin Adlershof, Rudower Chaussee 5, Berlin, D-12489, Germany

出版信息

J Colloid Interface Sci. 1998 Dec 1;208(1):6-13. doi: 10.1006/jcis.1998.5773.

Abstract

In this paper the influence of surface-active trace impurities in aqueous oligoethylene glycol monooctyl ether solutions on their adsorption behavior at the air/water interface is considered. The equilibrium surface tension (final sigmae) vs logarithm of concentration (ln c) isotherms of surfactants when used "as received" usually reveal a broad concentration range characterized by a constant slope, dfinal sigmae/d ln c. This linear dependence of the equilibrium surface tension on the logarithm of the surfactant concentration is observed for various surfactants at various fluid interfaces, which contradicts the fundamental Gibbs equation given in Eq. [1]. The same behavior was also observed for aqueous solutions of chemically well-defined oligoethylene glycol monooctyl ethers. In this case the paradoxical behavior did vanish after purification of aqueous solutions until the state of "surface-chemical purity" was reached using an apparatus for programmed high-performance purification of surfactant solutions. The gas chromatographic analyses of the original samples used showed that they contained impurities of different chemical structure and surface activity. Analysis of material aspirated from the surface of these alcohol ethoxylate solutions indicates that these trace impurities are enriched or impoverished at the solution's surface. A clear correlation between the surface activity parameter and the enrichment/impoverishment was found. Thus, these findings prove that the paradoxical adsorption behavior (dfinal sigmae/d ln c = constant) of the oligoethylene glycol monooctyl ethers is caused by surface-active trace impurities. These results support the hypotheses suggested by K. Lunkenheimer and Ch. Wedler [Tenside, Surfactants, Detergents 30, 342 (1993)] that generally it is the effect of surface-active trace impurities that gives rise to paradoxical adsorption behavior with surfactant systems at fluid interfaces. Copyright 1998 Academic Press.

摘要

本文研究了低聚乙二醇单辛醚水溶液中表面活性痕量杂质对其在气/水界面吸附行为的影响。当表面活性剂“原样使用”时,其平衡表面张力(最终σe)与浓度对数(ln c)的等温线通常显示出一个宽浓度范围,其特征是具有恒定斜率dfinal σe/d ln c。在各种流体界面上,对于各种表面活性剂都观察到平衡表面张力与表面活性剂浓度对数之间的这种线性关系,这与式[1]中给出的基本吉布斯方程相矛盾。对于化学结构明确的低聚乙二醇单辛醚水溶液也观察到了相同的行为。在这种情况下,使用用于表面活性剂溶液程序高效纯化的装置对水溶液进行纯化,直到达到“表面化学纯度”状态后,这种反常行为才消失。对所用原始样品的气相色谱分析表明,它们含有化学结构和表面活性不同的杂质。对从这些醇醚溶液表面吸出的物质的分析表明,这些痕量杂质在溶液表面富集或贫化。发现表面活性参数与富集/贫化之间存在明显的相关性。因此,这些发现证明,低聚乙二醇单辛醚的反常吸附行为(dfinal σe/d ln c = 常数)是由表面活性痕量杂质引起的。这些结果支持了K. Lunkenheimer和Ch. Wedler [《表面活性剂、洗涤剂》30, 342 (1993)]提出的假设,即一般来说,是表面活性痕量杂质的作用导致了表面活性剂体系在流体界面的反常吸附行为。版权所有1998年学术出版社。

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