Boudoire F, Partel S, Toth R, Heier J
Empa, Swiss Federal Laboratories for Materials Science and Technology, Laboratory for Functional Polymers Überlandstrasse 129, 8600 Dübendorf Switzerland
Empa, Swiss Federal Laboratories for Materials Science and Technology, Laboratory for High Performance Ceramics Überlandstrasse 129, 8600 Dübendorf Switzerland.
RSC Adv. 2018 Sep 3;8(54):30932-30936. doi: 10.1039/c8ra06160b. eCollection 2018 Aug 30.
Electrohydrodynamic lithography (EHDL) is a parallel patterning process which typically makes use of topographically structured electrodes to guide pattern formation along areas of higher electrical field strength. The main driving force for pattern formation is an electrostatic pressure acting on a thin film polymer surface caused by a voltage applied between a top and bottom electrode. We here demonstrate that the principle can be applied using an addressable electrode composed of interdigitated fingers. Depending on the applied voltages, line patterns with different periodicities were fabricated. Our proof-of-concept experiments pave the way for a parallel pattern replication process where a serially addressed master is used. We complement the experiments by modelling the potentials across the electrodes and electrostatic forces acting on the polymer surface using different addressing schemes. Numerical simulations of the experimental setup pointed to some critical issues we experienced during the design of the experiments.
电流体动力学光刻(EHDL)是一种并行图案化工艺,通常利用具有拓扑结构的电极来沿着电场强度较高的区域引导图案形成。图案形成的主要驱动力是施加在顶部和底部电极之间的电压在聚合物薄膜表面产生的静压力。我们在此证明,该原理可通过使用由叉指构成的可寻址电极来应用。根据施加的电压,制作出了具有不同周期性的线条图案。我们的概念验证实验为使用串行寻址母版的并行图案复制工艺铺平了道路。我们通过对电极间电位以及使用不同寻址方案时作用在聚合物表面的静电力进行建模来补充实验。对实验装置的数值模拟指出了我们在实验设计过程中遇到的一些关键问题。