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二元液体中等离激元气泡生长模式的转变。

Transition in the growth mode of plasmonic bubbles in binary liquids.

作者信息

Detert Marvin, Chen Yibo, Zandvliet Harold J W, Lohse Detlef

机构信息

Physics of Fluids Group, Department of Science and Technology, Max Planck Center for Complex Fluid Dynamics and J. M. Burgers Centre for Fluid Dynamics, MESA+ Institute for Nanotechnology, University of Twente, 7500AE Enschede, The Netherlands.

Physics of Interfaces and Nanomaterials, MESA+ Institute for Nanotechnology, University of Twente, 7500 AE Enschede, The Netherlands.

出版信息

Soft Matter. 2022 Jun 1;18(21):4136-4145. doi: 10.1039/d2sm00315e.

Abstract

Multi-component fluids with phase transitions show a plethora of fascinating phenomena with rich physics. Here we report on a transition in the growth mode of plasmonic bubbles in binary liquids. By employing high-speed imaging we reveal that the transition is from slow evaporative to fast convective growth and accompanied by a sudden increase in radius. The transition occurs as the three-phase contact line reaches the spinodal temperature of the more volatile component leading to massive, selective evaporation. This creates a strong solutal Marangoni flow along the bubble which marks the beginning of convective growth. We support this interpretation by simulations. After the transition the bubble starts to oscillate in position and in shape. Though different in magnitude the frequencies of both oscillations follow the same power law , which is characteristic of bubble shape oscillations, with the surface tension as the restoring force and the bubble's added mass as inertia. The transitions and the oscillations both induce a strong motion in the surrounding liquid, opening doors for various applications where local mixing is beneficial.

摘要

具有相变的多组分流体展现出大量具有丰富物理内涵的迷人现象。在此,我们报道二元液体中等离激元气泡生长模式的一种转变。通过高速成像,我们揭示这种转变是从缓慢蒸发生长到快速对流生长,并且伴随着半径的突然增加。当三相接触线达到挥发性更强组分的旋节线温度时,转变发生,导致大量的、选择性的蒸发。这会沿着气泡产生强烈的溶质马兰戈尼流,标志着对流生长的开始。我们通过模拟来支持这一解释。转变之后,气泡开始在位置和形状上振荡。尽管两种振荡的频率大小不同,但都遵循相同的幂律,这是气泡形状振荡的特征,以表面张力作为恢复力,以气泡的附加质量作为惯性。这些转变和振荡都会在周围液体中引发强烈运动,为各种有利于局部混合的应用打开了大门。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b30/9157508/b749a0f36d4a/d2sm00315e-f1.jpg

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