论文标题
在剪切功能化水面的参数法拉第波(Faraday波)上成型的水动力2D晶体
Moulding hydrodynamic 2D-crystals upon parametric Faraday waves in shear-functionalized water surfaces
论文作者
论文摘要
当液体垂直振动时,法拉第波(FWS)或表面波在固有频率的一半处振荡,是在液体表面上订购过渡的原型。高度粘性的流体已经证明了在散装摩擦应力下维持的无界FW模式的存在。但是,到目前为止尚未研究表面刚度的作用。在这里,我们证明了我们称为2D氢动力学晶体的动态冷冻FW的确显示为水面中非线性表面模式的有序模式,可溶于可溶性(BIO)表面活性剂,从而赋予了平面内剪切刚度。强相一致性与表面刚度增加的结合带有FW顺序的转变,通过参数控制其阶数程度,流体动力学晶体在其上可逆地塑造。根据FW分散状态调整晶体对称性和单位细胞大小。这里发现的流体动力晶体可以用软物质脚手架的无触摸策略来利用。特别是,在FW-CORERESS的外部控制下,可以改善基于胶体或聚合物的结构化材料以及组织工程的细胞培养模式的结构化材料的合成
Faraday waves (FWs), or surface waves oscillating at half of the natural frequency when a liquid is vertically vibrated, are archetypes of ordering transitions on liquid surfaces. The existence of unbounded FW-patterns sustained upon bulk frictional stresses has been evidenced in highly viscous fluids. However, the role of surface rigidity has not been investigated so far. Here, we demonstrate that dynamically frozen FWs that we call 2D-hydrodynamic crystals do appear as ordered patterns of nonlinear surface modes in water surfaces functionalized with soluble (bio)surfactants endowing in-plane shear stiffness. The strong phase coherence in conjunction with the increased surface rigidity bear the FW-ordering transition, upon which the hydrodynamic crystals were reversibly molded by parametric control of their degree of order. Crystal symmetry and unit cell size were tuned depending on the FW-dispersion regime. The hydrodynamic crystals here discovered could be exploited in touchless strategies of soft matter scaffolding. Particularly, the surface-directed synthesis of structured materials based on colloids or polymers and cell culture patterns for tissue engineering could be ameliorated under external control of FW-coherence