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扁平化和起皱的包裹液滴:重力和蒸发诱导的形状变形。

Flattened and Wrinkled Encapsulated Droplets: Shape Morphing Induced by Gravity and Evaporation.

机构信息

MOX-Dipartimento di Matematica, Politecnico di Milano, Piazza Leonardo da Vinci 32, 20133 Milano, Italy.

Department of Applied Physics, Aalto University School of Science, Espoo, Finland.

出版信息

Phys Rev Lett. 2023 May 26;130(21):218202. doi: 10.1103/PhysRevLett.130.218202.

Abstract

We report surprising morphological changes of suspension droplets (containing class II hydrophobin protein HFBI from Trichoderma reesei in water) as they evaporate with a contact line pinned on a rigid solid substrate. Both pendant and sessile droplets display the formation of an encapsulating elastic film as the bulk concentration of solute reaches a critical value during evaporation, but the morphology of the droplet varies significantly: for sessile droplets, the elastic film ultimately crumples in a nearly flattened area close to the apex while in pendant droplets, circumferential wrinkling occurs close to the contact line. These different morphologies are understood through a gravito-elastocapillary model that predicts the droplet morphology and the onset of shape changes, as well as showing that the influence of the direction of gravity remains crucial even for very small droplets (where the effect of gravity can normally be neglected). The results pave the way to control droplet shape in several engineering and biomedical applications.

摘要

我们报告了悬浮液滴(含有里氏木霉 HFBI 类 II 疏水蛋白的水相溶液)在蒸发过程中出现的令人惊讶的形态变化,此时接触线固定在刚性固体基底上。在蒸发过程中,当溶质的本体浓度达到临界值时,悬滴和固着液滴都会形成一个包裹性的弹性薄膜,但液滴的形态有显著差异:对于固着液滴,弹性薄膜最终在靠近顶点的几乎平坦区域内起皱,而对于悬滴,在接触线附近会发生周向褶皱。通过一个重力弹性毛细模型可以理解这些不同的形态,该模型可以预测液滴的形态和形状变化的开始,同时表明,即使对于非常小的液滴(通常可以忽略重力的影响),重力的方向仍然起着至关重要的作用。这些结果为在几个工程和生物医学应用中控制液滴的形状铺平了道路。

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