Yamamoto Daigo, Nakajima Chika, Shioi Akihisa, Krafft Marie Pierre, Yoshikawa Kenichi
Department of Chemical Engineering and Materials Science, Doshisha University, Kyoto 610-0321, Japan.
Fluorinated Soft Matter Group, Institut Charles Sadron (CNRS), University of Strasbourg, 23 rue du Loess, Strasbourg 67034, France.
Nat Commun. 2015 May 22;6:7189. doi: 10.1038/ncomms8189.
The design of dynamically self-assembled systems is of high interest in science and technology. Here, we report a unique cascade in the self-ordering of droplets accompanied by a dewetting transition. The dynamic self-emergent droplets are observed when a thin liquid layer of an immiscible fluorocarbon oil (perfluorooctyl bromide, PFOB) is placed on a water surface. Due to the gradual evaporation of PFOB, a circular PFOB-free domain appears as a result of a local dewetting transition. A circular pearling structure is generated at the rim with the growth of the dewetting hole. As the next stage, linear arrays of droplets are generated in a radial manner from the centre of the hole. These one-dimensional arrangements then evolve into two-dimensional hexagonal arrays of microdroplets through collective rhythmical shrinking/expanding motions. The emergence of such dynamic patterns is discussed in terms of the nonlinear kinetics of the dewetting transition under thermodynamically dissipative conditions.
动态自组装系统的设计在科学技术领域备受关注。在此,我们报道了一种独特的液滴自排序级联过程,该过程伴随着去湿转变。当将一层薄的不混溶氟碳油(全氟辛基溴,PFOB)置于水面上时,会观察到动态自出现的液滴。由于PFOB的逐渐蒸发,局部去湿转变导致出现一个无PFOB的圆形区域。随着去湿孔的扩大,在边缘处产生圆形珠状结构。下一阶段,从孔的中心以径向方式产生液滴的线性阵列。然后,这些一维排列通过集体有节奏的收缩/膨胀运动演变成二维六边形微滴阵列。在热力学耗散条件下,根据去湿转变的非线性动力学对这种动态模式的出现进行了讨论。