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软水凝胶球的弹性超润湿。

Elastowetting of Soft Hydrogel Spheres.

机构信息

Department of Chemical and Biomolecular Engineering , Lehigh University , Bethlehem , Pennsylvania 18015 , United States.

Laboratoire de Physico-Chimie Théorique, UMR CNRS Gulliver 7083, ESPCI Paris , PSL Research University , Paris , France.

出版信息

Langmuir. 2018 Apr 3;34(13):3894-3900. doi: 10.1021/acs.langmuir.8b00368. Epub 2018 Mar 19.

Abstract

When a soft hydrogel sphere is placed on a rigid hydrophilic substrate, it undergoes arrested spreading by forming an axisymmetric foot near the contact line, while conserving its global spherical shape. In contrast, liquid water (that constitutes greater than 90% of the hydrogel's volume) spreads into a thin film on the same surface. We study systematically this elastowetting of gel spheres on substrates of different surface energies and find that their contact angle increases as the work of adhesion between the gel and the substrate decreases, as one would observe for drops of pure water-albeit being larger than in the latter case. This difference in the contact angles of gel and water appears to be due to the elastic shear stresses that develop in the gel and oppose its spreading. Indeed, by increasing the elastic modulus of the gel spheres, we find that their contact angle also increases. In addition, the length of the contact foot increases with the work of adhesion and sphere size, while it decreases when the elastic modulus of the gel is increased. We discuss those experimental results in light of a minimal analysis based on energy minimization, volume conservation, and scaling arguments.

摘要

当一个柔软的水凝胶球体放在刚性亲水基底上时,它会在接触线附近形成轴对称的足,从而阻止其扩展,同时保持其整体球形。相比之下,液态水(占水凝胶体积的 90%以上)在同一表面上扩展为薄膜。我们系统地研究了不同表面能基底上水凝胶球体的这种弹性润湿现象,发现它们的接触角随着凝胶与基底之间的粘附功减小而增大,这与纯水液滴的情况相同——尽管比后者大。凝胶和水的接触角的这种差异似乎是由于在凝胶中产生的弹性剪切应力阻碍了其扩展。事实上,通过增加水凝胶球体的弹性模量,我们发现其接触角也随之增大。此外,接触足的长度随粘附功和球体尺寸的增大而增大,而随水凝胶弹性模量的增大而减小。我们根据基于能量最小化、体积守恒和标度分析的最小分析讨论了那些实验结果。

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