Soft Matter & Interfaces Group, School of Engineering, RMIT University, Melbourne, VIC 3001, Australia.
Electrical and Biomedical Engineering, RMIT University, Melbourne, VIC 3001, Australia.
Soft Matter. 2018 Apr 4;14(14):2628-2637. doi: 10.1039/C7SM02490H.
The coalescence between growing droplets is important for the surface coverage and spatial arrangements of droplets on surfaces. In this work, total internal reflection fluorescence (TIRF) microscopy is utilized to in situ investigate the formation of nanodroplets around the rim of a polymer microcap, with sub-micron spatial and millisecond temporal resolution. We observe that the coalescence among droplets occurs frequently during their growth by solvent exchange. Our experimental results show that the position of the droplet from two merged droplets is related to the size of the parent droplets. The position of the coalesced droplet and the ratio of parent droplet sizes obey a scaling law, reflecting a coalescence preference based on the size inequality. As a result of droplet coalescence, the angles between the centroids of two neighbouring droplets increase with time, obeying a nearly symmetrical arrangement of droplets at various time intervals. The evolution of the position and number from coalescence of growing droplets is modelled. The mechanism for coalescence driven self-organization of growing droplets is general, applicable to microcaps of different sizes and droplets of different liquids. The understanding from this work may be valuable for positioning nanodroplets by nucleation and growth without using templates.
液滴聚结对于表面覆盖和液滴在表面上的空间排列非常重要。在这项工作中,我们利用全内反射荧光(TIRF)显微镜原位研究了聚合物微腔边缘周围纳米液滴的形成过程,具有亚微米的空间分辨率和毫秒级的时间分辨率。我们观察到,在溶剂交换过程中,液滴的生长过程中经常发生液滴聚结。我们的实验结果表明,两个合并液滴的位置与母液滴的大小有关。聚结液滴的位置和母液滴大小的比例遵循标度律,反映了基于大小不等的聚结偏好。由于液滴聚结,两个相邻液滴的质心之间的夹角随时间增加,在不同的时间间隔内呈现出近乎对称的液滴排列。对生长液滴聚结引起的位置和数量的演化进行了建模。这种由聚结驱动的生长液滴自组织的机制具有普遍性,适用于不同大小的微腔和不同液体的液滴。这项工作的理解可能对无模板的通过成核和生长来定位纳米液滴具有重要意义。