论文标题
通过浸入涂层对粒子进行毛细管排序
Capillary Sorting of Particles by Dip Coating
论文作者
论文摘要
在这封信中,我们根据浸入涂层来描述按大小对粒子进行的毛细管排序。从液体浴中撤回的底物吸收涂层,其厚度取决于提取速度和液体性能。如果涂层材料含有颗粒,则只有在粘性力与底物拉动的粘性力将它们拉克在可变形的半月板处的相对毛细管力时,它们才会被夹住。该力阈值发生在不同尺寸颗粒的不同液体厚度下。在这里,我们表明这种差异可用于通过毛细管过滤将小颗粒与混合悬浮液分开。在次分类悬架中,我们观察到三个不同的过滤系统。在低毛细血管数,Ca下,没有颗粒夹在液体涂层中。在高CA,所有粒径都夹带。对于这两个极端之间的一系列毛细血管数,只有最小的颗粒被夹住,而较大的颗粒仍保留在储层中。我们解释了该技术如何应用于多分散悬浮液。我们还提供了给定尺寸的单独粒子的毛细管数范围。该技术与浸入涂层的可扩展性和鲁棒性的结合使其成为了工业和生物医学悬架的高通量分离或纯化的有前途的候选人。
In this letter, we describe the capillary sorting of particles by size based on dip coating. A substrate withdrawn from a liquid bath entrains a coating whose thickness depends on the withdrawal speed and the liquid properties. If the coating material contains particles, they will only be entrained when the viscous force pulling them with the substrate overcomes the opposing capillary force at the deformable meniscus. This force threshold occurs at different liquid thicknesses for particles of different sizes. Here, we show that this difference can be used to separate small particles from a mixed suspension through capillary filtration. In a bidisperse suspension, we observe three distinct filtration regimes. At low capillary numbers, Ca, no particles are entrained in the liquid coating. At high Ca, all particle sizes are entrained. For a range of capillary numbers between these two extremes, only the smallest particles are entrained while the larger ones remain in the reservoir. We explain how this technique can be applied to polydisperse suspension. We also provide an estimate of the range of capillary number to separate particles of given sizes. The combination of this technique with the scalability and robustness of dip coating makes it a promising candidate for high-throughput separation or purification of industrial and biomedical suspensions.