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Protruding organic surfaces triggered by in-plane electric fields

机译:平面电场触发的有机表面突出

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摘要

Coatings with a dynamic surface topography are of interest for applications in haptics, soft robotics, cell growth in biology, hydro- and air dynamics and tribology. Here we propose a design for creating oscillating surface topographies in thin liquid crystal polymer network coatings under an electric field. By applying an alternating electric field, the coating surface deforms, and pre-designed local corrugations appear. The continuous AC electric field further initiates oscillations superimposed on the formed topographies. This effect is based on microscopic free volume creation. By exciting the liquid crystal network at its resonance frequency, maximum free volume is generated and large surface topographies are formed. Molecular simulation is used to examine this behaviour in microscopic detail as a function of oscillation frequency. Surface topography formation is fast and reversible. Excess free volume is energetically unfavourable, thus the surface topographies disappear within seconds once the electric field is removed.
机译:具有动态表面形貌的涂层在触觉,软机器人,生物学中的细胞生长,水和空气动力学以及摩擦学中的应用很受关注。在这里,我们提出一种在电场下在薄液晶聚合物网络涂层中产生振荡表面形貌的设计。通过施加交变电场,涂层表面变形,并出现预先设计的局部波纹。连续的交流电场进一步引发叠加在所形成形貌上的振荡。此效果基于微观自由体积的创建。通过以共振频率激发液晶网络,可产生最大的自由体积并形成较大的表面形貌。分子模拟被用来检查微观行为作为振荡频率的函数。表面形貌的形成是快速且可逆的。多余的自由体积在能量上不利,因此一旦去除电场,表面形貌就会在几秒钟内消失。

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