Department of Physics & Astronomy and the Brockhouse Institute for Materials Research, McMaster University, Hamilton, Ontario, Canada.
Phys Rev Lett. 2012 Oct 12;109(15):154501. doi: 10.1103/PhysRevLett.109.154501. Epub 2012 Oct 9.
We present results on the leveling of polymer microdroplets on thin films prepared from the same material. In particular, we explore the crossover from a droplet spreading on an infinitesimally thin film (Tanner's law regime) to that of a droplet leveling on a film thicker than the droplet itself. In both regimes, the droplet's excess surface area decreases towards the equilibrium configuration of a flat liquid film, but with a different power law in time. Additionally, the characteristic leveling time depends on molecular properties, the size of the droplet, and the thickness of the underlying film. Flow within the film makes this system fundamentally different from a droplet spreading on a solid surface. We thus develop a theoretical model based on thin film hydrodynamics that quantitatively describes the observed crossover between the two leveling regimes.
我们展示了聚合物微滴在由相同材料制备的薄膜上水平化的结果。特别是,我们探索了从在无穷薄薄膜上的液滴扩展(Tanner 定律区)到在比液滴本身更厚的薄膜上的液滴水平化的转变。在这两个区,液滴的过剩表面积向平坦液体膜的平衡构型减少,但随时间的变化规律不同。此外,特征水平化时间取决于分子特性、液滴的大小和基底膜的厚度。薄膜内的流动使得这个系统从根本上与在固体表面上扩展的液滴不同。因此,我们开发了一个基于薄膜流体动力学的理论模型,定量描述了两个水平化区之间的观察到的转变。