Experimental Physics, Saarland University, D-66123 Saarbrücken, Germany.
J Phys Condens Matter. 2011 May 11;23(18):184108. doi: 10.1088/0953-8984/23/18/184108. Epub 2011 Apr 20.
When exposed to a partially wetting liquid, many natural and artificial surfaces equipped with complex topographies display a rich variety of liquid interfacial morphologies. In the present article, we focus on a few simple paradigmatic surface topographies and elaborate on the statics and dynamics of the resulting wetting morphologies. It is demonstrated that the spectrum of wetting morphologies increases with increasing complexity of the groove structure. On elastically deformable substrates, additional structures in the liquid morphologies can be observed, which are caused by deformations of the groove geometry in the presence of capillary forces. The emergence of certain liquid morphologies in grooves can be actively controlled by changes in wettability and geometry. For electrically conducting solid substrates, the apparent contact angle can be varied by electrowetting. This allows, depending on groove geometry, a reversible or irreversible transport of liquid along surface grooves. In the case of irreversible liquid transport in triangular grooves, the dynamics of the emerging instability is sensitive to the apparent hydrodynamic slip at the substrate. On elastic substrates, the geometry can be varied in a straightforward manner by stretching or relaxing the sample. The imbibition velocity in deformable grooves is significantly reduced compared to solid grooves, which is a result of the microscopic deformation of the elastic groove material close to the three phase contact line.
当暴露于部分润湿液体时,许多具有复杂形貌的天然和人工表面会显示出丰富多样的液体界面形态。在本文中,我们关注几种简单的典型表面形貌,并详细阐述了由此产生的润湿形态的静态和动态特性。结果表明,润湿形态的范围随着沟槽结构复杂性的增加而增加。在弹性可变形基底上,在毛细力的作用下,沟槽几何形状的变形会导致观察到额外的液体形态结构。通过改变润湿性和几何形状,可以主动控制某些液体形态在沟槽中的出现。对于导电固体基底,可以通过电润湿来改变表观接触角。这使得在特定的沟槽几何形状下,液体可以沿着表面沟槽进行可逆或不可逆的输送。在三角形沟槽中不可逆的液体输送情况下,出现的不稳定性的动力学对基底上的表观流体滑移非常敏感。在弹性基底上,可以通过拉伸或放松样品来直接改变几何形状。与固体沟槽相比,可变形沟槽中的吸入速度显著降低,这是由于靠近三相接触线的弹性沟槽材料的微观变形所致。