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Translating 2D Director Profile to 3D Topography in a Liquid Crystal Polymer

机译:将2D导演配置文件翻译为液晶聚合物中的3D地形

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摘要

Morphological properties of surfaces play a key role in natural and man‐made objects. The development of robust methods to fabricate microano surface structures has been a long pursuit. Herein, an approach based on molecular self‐assembling of liquid crystal polymers (LCPs) is presented to directly translate 2D molecular director profiles obtained by a photoalignment procedure into 3D topographies, without involving further multi‐step lithographic processes. The principle of surface deformation from a flat morphology into complex topographies is based on the coupling between electrostatic interactions and the anisotropic flow in LCPs. When activated by an electric field, the LCP melts and is driven by electrohydrodynamic instabilities to connect the electrode plates of a capacitor, inducing topographies governed by the director profile of the LCP. Upon switching off the electric field, the formed structures vitrify as the temperature decreases below the glass transition. When heated, the process is reversible as the formed topographies disappear. By pre‐programming the molecular director a variety of structures could be made with increasing complexity. The height, pitch, and the aspect ratio of the textures are further regulated by the conditions of the applied electric field. The proposed approach will open new opportunities for optical and electrical applications.
机译:表面的形态学性质在自然和人为物体中起着关键作用。制造微/纳米表面结构的鲁棒方法的发展已经延长了。这里,提出了一种基于液晶聚合物(LCP)的分子自组装的方法,以直接翻译通过光交易过程获得的2D分子导向器分布到3D地形,而不涉及进一步的多步光刻过程。从平面形态到复杂地形的表面变形原理基于静电相互作用与LCP中的各向异性流动之间的耦合。当由电场激活时,LCP熔化并且由电流动力学不稳定性驱动以连接电容器的电极板,引导由LCP的导向器配置文件控制的地形。关闭电场时,随着温度降低低于玻璃化转变,所形成的结构玻璃化。加热时,随着所形成的地形消失,该过程是可逆的。通过预先编程分子主任,可以通过增加复杂性来制造各种结构。纹理的高度,俯仰和纵横比通过所施加的电场的条件进一步调节。拟议的方法将开辟光学和电气应用的新机会。

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