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

机译:非平衡条件下的界面动力学:从自驱动液滴到动态模式演变

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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.
机译:在本文中,我们主要根据最近的研究结果来描述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的动态图案形成。对于液滴的自推进运动,我们引入了一个实验,其中坐在水层上的苯胺液滴在空气-水界面处自发移动。 Marangoni驱动的扩散的自发对称断裂会导致规则运动。在圆形培养皿中,液滴表现出直线运动或圆周运动。另一方面,我们显示了动态迷宫图案的出现,该图案是由亚稳薄膜从空气-水界面中脱湿引起的。有机相和水相之间的接触线形成了独特的时空模式,称为动态迷宫。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观察到的动态行为的基本方面。

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