论文标题
液 - 液相分离如何诱导主动扩散
How liquid-liquid phase separation induces active spreading
论文作者
论文摘要
相互分离与多组分混合物的润湿之间的相互作用在本质和技术上无处不在,由于发现了生物分子冷凝物,最近在科学学科中引起了极大的关注。众所周知,在静态润湿构型中进行相位分离的无梗液滴在其接触线处表现出微螺旋形成核,在后来的阶段形成油环。但是,当相位分离以非平衡润湿构型(即扩散液滴)发生时,对动态对应物知之甚少。在这里,我们报告液 - 液相分离与三相接触线的扩散运动强烈伴侣。因此,经典的Cox-Voinov定律不再适用,因为相位分离增加了毛细管驾驶以外的主动扩散力。有趣的是,我们观察到,在主液滴中微圆头的任何可见成核之前,扩散开始良好。使用高速椭圆测量法,我们进一步证明了表面力在液滴周围润湿前体膜中引起甚至更早的成核,从而启动了观察到的润湿过渡。我们期望我们的发现丰富对涉及动态接触线和/或表面力的相分离过程的基本理解,从而在广泛的应用中,从石油回收或喷墨印刷到材料合成和生物分子冷凝物。
The interplay between phase separation and wetting of multicomponent mixtures is ubiquitous in nature and technology and recently gained significant attention across scientific disciplines, due to the discovery of biomolecular condensates. It is well understood that sessile droplets, undergoing phase separation in a static wetting configuration, exhibit microdroplet nucleation at their contact lines, forming an oil ring during later stages. However, very little is known about the dynamic counterpart, when phase separation occurs in a non-equilibrium wetting configuration, i.e., spreading droplets. Here we report that liquid-liquid phase separation strongly couples to the spreading motion of three-phase contact lines. Thus, the classical Cox-Voinov law is not applicable anymore, because phase separation adds an active spreading force beyond the capillary driving. Intriguingly, we observe that spreading starts well before any visible nucleation of microdroplets in the main droplet. Using high-speed ellipsometry, we further demonstrate that surface forces cause an even earlier nucleation in the wetting precursor film around the droplet, initiating the observed wetting transition. We expect our findings to enrich the fundamental understanding of phase separation processes that involve dynamical contact lines and/or surface forces, with implications in a wide range of applications, from oil recovery or inkjet printing to material synthesis and biomolecular condensates.