论文标题
无柄胶体水甘油液滴的蒸发:Marangoni环形成
Evaporation of a sessile colloidal water-glycerol droplet: Marangoni ring formation
论文作者
论文摘要
悬浮液中颗粒的运输和聚集是许多物理化学和工业过程中的重要过程。在这项工作中,我们研究了蒸发二元液滴中颗粒的运输。令人惊讶的是,颗粒的积累不仅发生在接触线(由于咖啡污染物的效果)或固体底物(由于沉积物),而且在液态空气界面附近的特定径向位置上发生,形成了“环”,我们称其为Marangoni环。该环的形成主要归因于水 - 甘油液滴的蒸发动力学触发的溶质马龙尼流动。实验和仿真显示了在体积演化和溶质巨石流的一般结构中的公平一致性,即Marangoni涡流。实验表明,Marangoni环的位置与Marangoni涡流密切相关。但是,有限元数值模拟无法描述实验中看到的粒子分布。有趣的是,这些颗粒不仅积聚形成Marangoni环,而且作为胶体晶体接近液体界面的组装,产生虹彩。实验中胶体晶体的形成是有力的证据表明,在模拟中未表示的非流动力相互作用在我们的系统中也起着重要作用。
The transport and aggregation of particles in suspensions is an important process in many physicochemical and industrial processes. In this work, we study the transport of particles in an evaporating binary droplet. Surprisingly, the accumulation of particles occurs not only at the contact line (due to the coffee-stain effect) or at the solid substrate (due to sedimentation), but also at a particular radial position near the liquid-air interface, forming a "ring", which we term as the Marangoni ring. The formation of this ring is primarily attributed to the solutal Marangoni flow triggered by the evaporation dynamics of the water-glycerol droplet. Experiments and simulations show fair agreement in the volume evolution and the general structure of the solutal Marangoni flow, that is, the Marangoni vortex. Experiments show that the location of the Marangoni ring is strongly correlated with the Marangoni vortex. However, finite element numerical simulations fail to describe the particle distribution seen in the experiments. Interestingly, the particles not only accumulate to form the Marangoni ring but also assemble as colloidal crystals close to the liquid-air interface, yielding iridescence. The formation of the colloidal crystals in the experiments is strong evidence that non-hydrodynamic interactions, which are not represented in the simulations, also play a significant role in our system.