Departamento de Química Física, Universidad Complutense de Madrid, Ciudad Universitaria s/n, Madrid, Spain.
Translational Biophysics, Instituto de Investigación Sanitaria Hospital Doce de Octubre, Madrid, Spain.
Nat Commun. 2021 Feb 18;12(1):1130. doi: 10.1038/s41467-021-21403-0.
Faraday waves, or surface waves oscillating at half of the natural frequency when a liquid is vertically vibrated, are archetypes of ordering transitions on liquid surfaces. Although unbounded Faraday waves patterns sustained upon bulk frictional stresses have been reported in highly viscous fluids, the role of surface rigidity has not been investigated so far. Here, we demonstrate that dynamically frozen Faraday waves-that we call 2D-hydrodynamic crystals-do appear as ordered patterns of nonlinear gravity-capillary modes in water surfaces functionalized with soluble (bio)surfactants endowing in-plane shear stiffness. The phase coherence in conjunction with the increased surface rigidity bears the Faraday waves ordering transition, upon which the hydrodynamic crystals were reversibly molded under parametric control of their degree of order, unit cell size and symmetry. The hydrodynamic crystals here discovered could be exploited in touchless strategies of soft matter and biological scaffolding ameliorated under external control of Faraday waves coherence.
行波,即在液体上下振动时以自然频率一半频率振荡的表面波,是液体表面有序相变的原型。尽管在高粘性流体中已经报道了在体摩擦应力下维持的无界行波模式,但表面刚性的作用迄今尚未得到研究。在这里,我们证明了动态冻结的行波 - 我们称之为二维流体动力学晶体 - 在用水表面功能化可溶性(生物)表面活性剂赋予面内剪切刚度时,确实会出现作为非线性重力 - 毛细模式的有序图案。相干性以及表面刚性的增加导致行波有序相变,在此基础上,可以在其有序程度、单元大小和对称性的参数控制下,可逆地模塑流体动力学晶体。在此发现的流体动力学晶体可以在无需接触的软物质策略中得到利用,并在外部控制行波相干性的情况下改善生物支架。