Soft Materials Laboratory, Department of Physics, IIT Madras, Chennai - 600036, India.
Nanoscale. 2017 Dec 7;9(47):18798-18803. doi: 10.1039/c7nr06732a.
We report a complete suppression of the coffee-ring effect resulting in the formation of loosely packed two-dimensional particle monolayers by controlled evaporation of sessile drops containing soft microgel particles. These particulate deposits show gradual order-to-disorder transitions that are not abrupt like deposits of hard colloids. The areal coverage of the monolayer deposits can also be precisely controlled by tuning the particle concentration. The preferential adsorption of soft-microgel particles to the water-vapor interface, and their radial flow along the interface towards the drop edge facilitates the creation of the novel monolayer deposits.
我们报告了一种完全抑制咖啡环效应的方法,通过控制含有软质微凝胶颗粒的液滴的蒸发,形成了松散堆积的二维颗粒单层。这些颗粒沉积物表现出逐渐的从有序到无序的转变,而不像硬胶体沉积物那样是突然的。通过调节颗粒浓度,也可以精确控制单层沉积物的面积覆盖率。软质微凝胶颗粒对水蒸气界面的优先吸附,以及它们沿界面向液滴边缘的径向流动,有利于新型单层沉积物的形成。