Bio/Micro-fluid Lab, Department of Mechanical Engineering, Chosun University, Gwang-ju, 501-759, Korea.
Langmuir. 2011 Jan 18;27(2):828-34. doi: 10.1021/la1040954. Epub 2010 Dec 13.
An electric field-aided process was introduced for a curable casting process. As a micro/nanosized pattern mask, a lotus leaf, which has a hierarchical structure, was used. The process consists of two steps: (1) applying an electric field to a liquid polymer and solidifying the polymer for use as a negative mold, and (2) using the negative polymer mold to fabricate a replicated poly(ethylene oxide) (PEO) surface in the original shape of the lotus leaf. In this process, the applied electric field induces unstable vibration of the liquid polymer, due to electrokinetic phenomena. The electrokinetic fluid motion resulted in well-replicated PEO surfaces. The quality of the fabricated surface was highly dependent on the applied field and pressure. We believe that this technique improves the quality of the standard nanocasting method and will be useful for fabricating micro/nanosized structures.
电场辅助工艺被引入可固化铸造工艺。作为微/纳米图案掩模,使用了具有分层结构的荷叶。该工艺包括两个步骤:(1)在液体聚合物上施加电场并使聚合物固化,用作负模;(2)使用负聚合物模具在荷叶的原始形状下制造复制的聚环氧乙烷(PEO)表面。在该过程中,由于电动现象,施加的电场会引起液体聚合物的不稳定振动。电动流体运动导致 PEO 表面得到很好的复制。所制造表面的质量高度依赖于所施加的电场和压力。我们相信,这项技术可以提高标准纳米铸造方法的质量,并且对于制造微/纳米结构将是有用的。