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Electrowetting Assisted Air Detrapping in Transfer Micromolding for Difficult-to-Mold Microstructures

机译:难铸微结构转移微成型中的电润湿辅助空气脱困

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摘要

As a widely applicable process for fabricating micro- or nanostructures, micromolding in atmosphere would require the removal or minimization of air-trapping in mold cavities so as to fill the liquid prepolymer fully into the mold for generating an exact polymer duplicate. This has been difficult, if not impossible, especially for a mold with high aspect ratio, varying size/shape, or isolated cavities because the air can be trapped inside such mold cavities in most variants of the molding process. This paper presents an electrowetting assisted transfer micromolding process to solve this problem. A feeding blade continuously supplies a UV-curable prepolymer over a dielectric-coated conductive mold placed on a progressively advancing stage. A voltage applied to the electrode pair composed of the feeding blade and mold generates an electrowetting of the prepolymer to the mold. The electrowetting allows for the three-phase contact line to pass progressively along the sidewalls and bottoms of the cavities, completely pushing out the air initially occupying the cavities, or generates an electrpcapillary force large enough to pull the prepolymer deeply into the mold by compressing the air already trapped inside the cavities to a minimized volume. An experiment has been performed for micromolding with deep cavities of various shapes and sizes, demonstrating an essential improvement in the structural integrity of the polymer duplicates.
机译:作为用于制造微结构或纳米结构的广泛应用的方法,在大气中进行微成型将需要去除或最小化模腔中的气阱,以便将液态预聚物完全填充到模具中以产生精确的聚合物复制品。这是困难的,即使不是不可能的,尤其是对于具有高纵横比,变化的尺寸/形状或隔离的型腔的模具而言,因为在模制工艺的大多数变型中,空气可能会滞留在这种型腔内。本文提出了一种电润湿辅助转移微成型工艺来解决这个问题。进料刀片在放置在逐步推进台上的介电涂层导电模具上连续提供可紫外线固化的预聚物。施加到由进料刀片和模具组成的电极对上的电压使预聚物电润湿到模具上。电润湿可以使三相接触线逐渐沿着型腔的侧壁和底部通过,从而完全排出最初占据型腔的空气,或者产生足够大的电毛细管力,通过压缩预聚物来将预聚物深深地拉入模具中。空气已经截留在型腔内,体积最小。已经进行了用于具有各种形状和尺寸的深型腔的微成型的实验,证明了聚合物复制品的结构完整性上的实质性改进。

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