Anal Chem. 2010 Feb 1;82(3):784-8. doi: 10.1021/ac902288z.
The evaporating sessile droplet of a mono/didisperse colloid on a plate is a very useful and handy technique in micro/nano/bioapplications to separate, pattern, and control the particles. Although the fundamental nature of the evaporation phenomena and its applications have been extensively proposed, the crucial forces affecting a single particle motion in an evaporating droplet are not reported yet. To elucidate the impact of various forces including the drag, electrostatic, van der Waals, and surface tension forces on the particle motion in suspension, the magnitudes of them are compared using the scale analysis. In the early stage of the evaporation, in which the contact line is fixed, the motion of a single particle suspended in liquid are mostly affected by drag force. Later, with the incidence of the contact line recession, the surface tension force takes over the control of the single particle motion.
在微纳生物应用中,将单分散或多分散胶体的附着液滴蒸发是一种非常有用和便捷的技术,可用于分离、图案化和控制颗粒。尽管蒸发现象及其应用的基本性质已经得到了广泛的提出,但影响蒸发液滴中单个颗粒运动的关键力尚未得到报道。为了阐明包括阻力、静电力、范德华力和表面张力在内的各种力对悬浮颗粒运动的影响,使用比例分析比较了它们的大小。在蒸发的早期阶段,接触线固定,悬浮在液体中的单个颗粒的运动主要受阻力的影响。随后,随着接触线后退的发生,表面张力开始控制单个颗粒的运动。