John Karin, Hänggi Peter, Thiele Uwe
LSP, Université J. Fourier, BP 87 - 38402 Grenoble Cedex, France.
Institut für Physik, Universität Augsburg, D-86135 Augsburg, Germany.
Soft Matter. 2008 May 14;4(6):1183-1195. doi: 10.1039/b718850a.
We present a two-layer thin film model allowing us to study the behavior of a general class of 'wettability ratchets' that can be employed to transport a continuous phase. Brownian ratchets, in contrast, are normally used to transport particles or molecules within a continuous carrier fluid without transporting the fluid itself. The wettability ratchet is based on a switchable, spatially asymmetric, periodic interaction of the free surface of the film and the walls. To illustrate the general concept, we focus on an electrical dewetting mechanism based on the effective force exercised by a static electric field on the liquid-liquid interface between two dielectric liquids. In particular, we analyse (i) an on-off ratchet with a constant lateral force resulting in a dewetting-spreading cycle, (ii) a ratchet switching between two shifted potentials that shows a transition between oscillating and sliding drops, and (iii) a flashing external force ratchet. For the three cases, the macroscopic transport is studied in its dependence on spatial and temporal characteristics of the ratchet, and physical properties and volume of the liquids.
我们提出了一种双层薄膜模型,该模型使我们能够研究一类可用于传输连续相的“润湿性棘轮”的行为。相比之下,布朗棘轮通常用于在连续的载液中传输颗粒或分子,而不传输流体本身。润湿性棘轮基于薄膜自由表面与壁之间可切换的、空间不对称的周期性相互作用。为了说明这一通用概念,我们重点研究了一种基于静电场对两种介电液体之间的液 - 液界面施加的有效力的电去湿机制。具体而言,我们分析了:(i)具有恒定侧向力的通断棘轮,其导致去湿 - 铺展循环;(ii)在两个移位电位之间切换的棘轮,其显示出振荡液滴和滑动液滴之间的转变;(iii)闪烁外力棘轮。对于这三种情况,研究了宏观传输对棘轮的空间和时间特性以及液体的物理性质和体积的依赖性。