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溶剂/空气界面处存在微米级别的液滴。

Existence of micrometer-scale water droplets at solvent/air interfaces.

机构信息

School of Chemistry and Centre for Research on Adaptive Nanostructures and Nanodevices, Trinity College Dublin, Dublin 2, Ireland.

出版信息

Langmuir. 2012 Sep 18;28(37):13218-23. doi: 10.1021/la302420s. Epub 2012 Sep 6.

DOI:10.1021/la302420s
PMID:22928544
Abstract

Standard surface energy balances using literature values for pure liquids predict that water droplets are unstable at the liquid/air interfaces of many common organic solvents. While the behavior of macroscopic drops in the presence of solvents has been studied, the study of droplets in the micrometer size regime and the possible role of line tension are notably absent. In this article, we experimentally investigate the existence and stability of such micrometer-scale droplets formed at air/solvent interfaces and the possible roles played by partial solubility of organic liquids in water and solvent migration in the lowering of the key air/water surface tension. Three solvents are studied: toluene, butyl acetate, and chloroform, using a technique to optically monitor both condensation and manual deposition of water microdroplets onto air/solvent surfaces. This demonstrates both the existence of stable water droplets and allows measurement of the contact angles at the solvent/water/air interface. Contact angles are shown to be independent of droplet size (diameters: 2-30 μm), ruling out a line tension stabilization mechanism for droplets of radii greater than 1 μm. The interfacial tensions of the deposited water droplets are independently measured using an equivalent macroscopic experiment, which yield results consistent with the partial miscibility of toluene and butyl acetate in water. A discrepancy is observed for chloroform, for which possible mechanisms are discussed.

摘要

标准的表面能量平衡使用纯液体的文献值预测,许多常见有机溶剂的液/气界面上的水滴是不稳定的。虽然已经研究了宏观液滴在溶剂存在下的行为,但在微米级液滴的研究以及线张力的可能作用方面,仍然存在显著的空白。在本文中,我们通过实验研究了在空气/溶剂界面处形成的这种微米级液滴的存在和稳定性,以及有机溶剂在水中的部分溶解度和溶剂迁移在降低关键空气/水表面张力方面可能起到的作用。我们研究了三种溶剂:甲苯、乙酸丁酯和氯仿,使用一种技术来光学监测水微滴在空气/溶剂表面上的冷凝和手动沉积。这既证明了稳定的水滴的存在,也允许测量溶剂/水/空气界面处的接触角。接触角与液滴尺寸(直径:2-30 μm)无关,排除了大于 1 μm 半径的液滴的线张力稳定机制。使用等效的宏观实验独立测量沉积的水滴的界面张力,结果与甲苯和乙酸丁酯在水中的部分混溶性一致。对于氯仿,观察到了差异,并讨论了可能的机制。

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