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全氟正链烷酸钠在空气/水界面的吸附特性:1:1离子型表面活性剂同系物中的反离子效应

Adsorption properties of surface chemically pure sodium perfluoro-n-alkanoates at the air/water interface: counterion effects within homologous series of 1:1 ionic surfactants.

作者信息

Lunkenheimer Klaus, Prescher Dietrich, Hirte Rolf, Geggel Katrina

机构信息

Max-Planck-Institut für Kolloid- und Grenzflächenforschung , Department Adsorption Layers, Am Mühlenberg 1, D-16321 Potsdam, Germany.

出版信息

Langmuir. 2015 Jan 27;31(3):970-81. doi: 10.1021/la503450k. Epub 2015 Jan 14.

Abstract

The unusual behavior of saturation adsorption calculated from experimental equilibrium surface tension (σ(e)) versus logarithm of concentration (c) isotherms within the homologous series of aqueous sodium perfluoro-n-alkanoate solutions represents a particular problem in the adsorption of homologous ionic 1:1 amphiphiles at fluid interfaces. Special precautions were taken to guarantee surface-chemical purity for all solutions, avoiding falsifying effects by surface-active trace impurities. Surprisingly, all homologues' adsorption isotherms reveal ideal surface behavior. The minimal surface area demand per molecule adsorbed for shorter-chain homologues slightly decreases with increasing chain lengths but then goes up steeply after having passed a minimum. A similar feature has been observed with the chemically quite different homologous series of the hydrocarbon surfactants of sodium-n-alkylsulfates. Comparing the corresponding 3D saturation concentrations in the boundary layer and in the bulk, it becomes evident that at high bulk concentrations when boundary layer and bulk concentrations are of the same order of magnitude the adsorption behavior may be treated as that of a pseudononionic surfactant. However, under conditions of the homologues' strongest surface activity, adsorption seems to become increasingly governed by electrostatic repulsion, resulting in increasingly greater cross-sectional areas. Deviation from pseudononionic behavior sets in when the Debye length becomes distinctly greater than the adsorbent's diameter at saturation. Formerly available theories on ionic amphiphiles' adsorption deal either with electrical conditions of surfactant ions and counterions in the adsorption boundary layer or alternatively with pseudononionic behavior neglecting the former theories completely. Warszynski et al.'s novel theoretical model of the "surface quasi-two-dimensional electrolyte" seems to be capable of describing the adsorption of ionic amphiphiles at fluid interfaces in general. We conclude that the conditions of the two alternative approaches may be met within homologous series of ionic amphiphiles as limiting cases only.

摘要

全氟正构烷酸钠盐水溶液同系物中,根据实验平衡表面张力(σ(e))与浓度对数(c)等温线计算得出的饱和吸附异常行为,代表了同系离子型1:1两亲物在流体界面吸附时的一个特殊问题。我们采取了特殊预防措施来确保所有溶液的表面化学纯度,避免表面活性痕量杂质产生的干扰效应。令人惊讶的是,所有同系物的吸附等温线都呈现出理想的表面行为。短链同系物每吸附一个分子所需的最小表面积需求,随链长增加略有下降,但在达到最小值后急剧上升。在化学性质截然不同的正烷基硫酸钠烃类表面活性剂同系物中也观察到了类似特征。比较边界层和本体中的相应三维饱和浓度,很明显,在高本体浓度下,当边界层浓度和本体浓度处于同一数量级时,吸附行为可视为拟非离子表面活性剂的行为。然而,在同系物表面活性最强的条件下,吸附似乎越来越受静电排斥作用支配,导致横截面面积越来越大。当德拜长度明显大于饱和时吸附剂的直径时,就会出现偏离拟非离子行为的情况。以前关于离子型两亲物吸附的理论,要么涉及吸附边界层中表面活性剂离子和抗衡离子的电学条件,要么完全忽略前者理论而只考虑拟非离子行为。瓦尔辛斯基等人提出的“表面准二维电解质”新颖理论模型,似乎能够总体上描述离子型两亲物在流体界面的吸附。我们得出结论,在离子型两亲物同系物中,这两种替代方法的条件仅作为极限情况才能满足。

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