Mondal Ranajit, Basavaraj Madivala G
Polymer Engineering and Colloid Science Laboratory (PECS Lab), Department of Chemical Engineering, Indian Institute of Technology Madras, Chennai-600036, India.
Soft Matter. 2020 Apr 15;16(15):3753-3761. doi: 10.1039/d0sm00118j.
Drying of complex fluids is a fascinating subject of interest to several growing fields, for example, forensic science, lithography, printing and coating technologies. In this article, we report that the drying of charge stabilized colloidal dispersions between two parallel plates is a route to intriguing self-assembly patterns. We show that when the dispersions are dried in parallel plate confinement, particles deposit as spiral patterns after the complete evaporation of the solvent irrespective of the confinement spacing. The formation of such patterns is understood by analyzing the underlying three phase contact line dynamics during the drying process. Compared to the usual discrete stick-slip motion of the contact line, typically observed in several drying configurations, in the parallel plate drying configuration, the contact line is found to exhibit continuous stick-slip motion. The de-pinning of the contact line is found to occur only locally and is observed to propagate in both clockwise and anticlockwise directions, leading to the patterning of colloids as spirals. Furthermore, we show that while the number of turns in the spiral deposit is influenced by the dispersion volume and particle concentration, the spiral patterns form irrespective of the shape of the particles in the dispersion.
复杂流体的干燥是几个新兴领域感兴趣的一个引人入胜的课题,例如法医学、光刻、印刷和涂层技术。在本文中,我们报道了在两个平行板之间干燥电荷稳定的胶体分散体是形成有趣的自组装图案的一条途径。我们表明,当分散体在平行板限制条件下干燥时,溶剂完全蒸发后颗粒会以螺旋图案沉积,而与限制间距无关。通过分析干燥过程中潜在的三相接触线动力学可以理解这种图案的形成。与通常在几种干燥配置中观察到的接触线通常的离散粘滑运动相比,在平行板干燥配置中,发现接触线表现出连续的粘滑运动。发现接触线的去钉扎仅在局部发生,并观察到其沿顺时针和逆时针方向传播,导致胶体形成螺旋图案。此外,我们表明,虽然螺旋沉积物中的匝数受分散体体积和颗粒浓度的影响,但无论分散体中颗粒的形状如何,都会形成螺旋图案。