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Surface forces in thin liquid films of n-alcohols and of water-ethanol mixtures confined between hydrophobic surfaces

机译:限制在疏水性表面之间的正醇和水-乙醇混合物的液体薄膜中的表面力

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摘要

An atomic force microscope (AFM) was used to measure the surface forces in thin liquid films (TLFs) confined between gold surfaces hydrophobized by chemisorption of alkylthiols. The measurements were conducted in different H-bonding liquids and in water-ethanol solutions. Attractive forces stronger and longer-ranged than the van der Waals force were observed in water, ethanol, and 1-butanol in a descending order. The attractive force measured in methanol was much weaker. The surface forces measured in ethanol solutions varied with concentration. Initially, the attractive forces decreased rapidly upon ethanol addition, passed through a broad minimum centered around mole fractions in the range of 0.15-0.20, and then increased as the ethanol mole fraction was further increased above ~0.5. Thermodynamic analysis of the data suggests that clusters of water and ethanol may form in TLFs. Thus, the attractive forces may arise from changes in liquid structure. It appears that structuring is a consequence of H-bonding liquid to minimize its free energy in the vicinity of hydrophobic surfaces and in the presence of foreign species in solution.
机译:使用原子力显微镜(AFM)来测量通过烷基硫醇的化学吸附而疏水化的金表面之间的液体薄膜(TLF)中的表面力。测量是在不同的氢键液体和水-乙醇溶液中进行的。在水,乙醇和1-丁醇中,以降序排列的引力比范德华力更强,作用范围更远。在甲醇中测得的吸引力要弱得多。在乙醇溶液中测得的表面力随浓度而变化。最初,吸引力随着乙醇的添加而迅速降低,经过一个以摩尔分数为中心的宽泛的最小值,范围在0.15-0.20之间,然后随着乙醇摩尔分数进一步增加到约0.5以上而增加。数据的热力学分析表明,TLF中可能形成水和乙醇簇。因此,吸引力可能来自液体结构的变化。看来结构化是氢键合液体的结果,该氢键合液体在疏水性表面附近和溶液中存在异物的情况下使其自由能最小化。

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