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液滴回缩形成边缘。

Drops retracting while forming a rim.

机构信息

Dept. of Mechanical Engineering, Ben Gurion University of the Negev, Beer Sheva, Israel; Dan Smith Dept. of Chemical Engineering, Lamar University, Beaumont, TX, United States.

Dept. of Mechanical Engineering, Ben Gurion University of the Negev, Beer Sheva, Israel.

出版信息

J Colloid Interface Sci. 2021 Jan 1;581(Pt B):496-503. doi: 10.1016/j.jcis.2020.07.109. Epub 2020 Jul 26.

Abstract

HYPOTHESIS

Surfactant laden droplets may spread faster on a substrate and, subsequently, retract (spontaneously reversing the drop's direction). We hypothesize that this Marmur-Lelah type retraction can be explained by a de Gennes-type triple line fluctuation expression that is modified to represent our anisotropic surfactant adsorption. This explanation requires that the retraction originates inner to the triple line (not at the triple line itself).

EXPERIMENTS

Drops of oil with surfactant (mainly tetradecane with octadecylamine) were allowed to spread on freshly cleaved mica surfaces at various concentrations and recorded with a high-speed camera.

FINDINGS

At low concentrations, the subsequent retraction left a rim of liquid at the triple line location of maximal spreading whose thickness was inversely related to the surfactant concentration. This indeed agrees with de Gennes' triple line fluctuation expression that is modified to fit the anisotropic adsorption of the surfactant during the spreading period, which induces a solid-liquid interfacial energy gradient. According to this explanation, the rim may exist also at high surfactant solution concentrations, however, there can be a limit at which the surfactant solution concentration is so high that the rim's thickness is practically zero.

摘要

假设

负载表面活性剂的液滴在基底上可能扩散得更快,随后回缩(自发地改变液滴的方向)。我们假设这种 Marmur-Lelah 型回缩可以用 de Gennes 型三线波动表达式来解释,该表达式经过修改以表示我们各向异性的表面活性剂吸附。这种解释要求回缩从三线内部开始(而不是在三线本身)。

实验

将含有表面活性剂(主要是十四烷和十八胺)的油滴在不同浓度下在新剥离的云母表面上展开,并通过高速摄像机进行记录。

发现

在低浓度下,随后的回缩在最大扩展的三线位置留下了一层液体边缘,其厚度与表面活性剂浓度成反比。这确实与 de Gennes 的三线波动表达式一致,该表达式经过修改以适应扩展过程中表面活性剂的各向异性吸附,这会导致固-液界面能梯度。根据这种解释,在高表面活性剂溶液浓度下也可能存在边缘,但是,可能存在一个极限,超过该极限后,表面活性剂溶液浓度非常高,以至于边缘的厚度实际上为零。

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