Wolfson Department of Chemical Engineering , Technion - Israel Institute of Technology , Haifa , Israel 32000.
Institut für Theoretische Physik , Westfälische Wilhelms-Universität Münster , Wilhelm Klemm Str. 9 , 48149 Münster , Germany.
Langmuir. 2018 Oct 2;34(39):11784-11794. doi: 10.1021/acs.langmuir.8b02268. Epub 2018 Sep 20.
We study the deposition mechanisms of polymer from a confined meniscus of volatile liquid. In particular, we investigate the physical processes that are responsible for qualitative changes in the pattern deposition of polymer and the underlying interplay of the state of pattern deposition, motion of the meniscus, and the transport of polymer within the meniscus. As a model system we evaporate a solution of poly(methyl methacrylate) (PMMA) in toluene. Different deposition patterns are observed when varying the molecular mass, the initial concentration of the solute, and temperature; these are systematically presented in the form of morphological phase diagrams. The modi of deposition and meniscus motion are correlated. They vary with the ratio between the evaporation-driven convective flux and the diffusive flux of the polymer coils in the solution. In the case of a diffusion-dominated solute transport, the solution monotonically dewets the solid substrate by evaporation, supporting continuous contact line motion and continuous polymer deposition. However, a convection-dominated transport results in an oscillatory ratcheting dewetting-wetting motion of the contact line with more pronounced dewetting phases. The deposition process is then periodic and produces a stripe pattern. The oscillatory motion of the meniscus differs from the well documented stick-slip motion of the meniscus, observed as well, and is attributed to the opposing influences of evaporation and Marangoni stresses, which alternately dominate the deposition process.
我们研究了聚合物从挥发性液体的受限弯月面中的沉积机制。特别地,我们研究了导致聚合物图案沉积定性变化的物理过程以及图案沉积状态、弯月面运动和聚合物在弯月面内传输之间的相互作用。作为模型体系,我们蒸发了聚甲基丙烯酸甲酯(PMMA)在甲苯中的溶液。当改变分子量、初始溶质浓度和温度时,观察到不同的沉积图案;这些图案以形态相图的形式系统地呈现。沉积模式和弯月面运动是相关的。它们随蒸发驱动的对流通量与溶液中聚合物线圈的扩散通量之比而变化。在溶质传输受扩散控制的情况下,溶液通过蒸发单调地使固体基底脱湿,支持连续的接触线运动和连续的聚合物沉积。然而,在对流控制的传输的情况下,接触线会产生更明显的脱湿相的振荡棘轮式脱湿-润湿运动。沉积过程是周期性的,产生条纹图案。弯月面的振荡运动与文献中观察到的弯月面的粘滑运动不同,这归因于蒸发和 Marangoni 应力的相反影响,它们交替地主导沉积过程。