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非平衡条件下的界面动力学:从自驱动液滴到动态模式演化

Interface dynamics under nonequilibrium conditions: from a self-propelled droplet to dynamic pattern evolution.

作者信息

Chen Y-J, Yoshikawa K

机构信息

Department of Physics, Graduate School of Science, Kyoto University, Japan.

出版信息

Eur Phys J E Soft Matter. 2011 Apr;34(4):38. doi: 10.1140/epje/i2011-11038-3. Epub 2011 Apr 18.

Abstract

In this article, we describe the instability of a contact line under nonequilibrium conditions mainly based on the results of our recent studies. Two experimental examples are presented: the self-propelled motion of a liquid droplet and spontaneous dynamic pattern formation. For the self-propelled motion of a droplet, we introduce an experiment in which a droplet of aniline sitting on an aqueous layer moves spontaneously at an air-water interface. The spontaneous symmetry breaking of Marangoni-driven spreading causes regular motion. In a circular Petri dish, the droplet exhibits either beeline motion or circular motion. On the other hand, we show the emergence of a dynamic labyrinthine pattern caused by dewetting of a metastable thin film from the air-water interface. The contact line between the organic phase and the aqueous phase forms a unique spatio-temporal pattern characterized as a dynamic labyrinth. Motion of the contact line is controlled by diffusion processes. We propose a theoretical model to interpret essential aspects of the observed dynamic behavior.

摘要

在本文中,我们主要基于近期的研究成果,描述了非平衡条件下接触线的不稳定性。给出了两个实验示例:液滴的自推进运动和自发动态图案形成。对于液滴的自推进运动,我们介绍了一个实验,其中苯胺液滴位于水层上,在空气 - 水界面处自发移动。马兰戈尼驱动铺展的自发对称性破缺导致规则运动。在圆形培养皿中,液滴呈现直线运动或圆周运动。另一方面,我们展示了由亚稳薄膜从空气 - 水界面脱湿引起的动态迷宫图案的出现。有机相和水相之间的接触线形成了一种独特的时空图案,其特征为动态迷宫。接触线的运动由扩散过程控制。我们提出了一个理论模型来解释所观察到的动态行为的基本方面。

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