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Electrically Templated Dewetting of a UV-Curable Prepolymer Film for the Fabrication of a Concave Microlens Array with Well-Defined Curvature

机译:紫外线固化的预聚物薄膜的电模板去湿,用于制造具有定义明确的曲率的凹型微透镜阵列

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This paper presents an economic method, based on electrically templated dewetting of a UV-curable prepolymer, for fabricating a concave microlens array (MLA) of high quality and high density. In our strategy, a voltage is applied to an electrode pair consisting of a conductive substrate coated with a UV-curable prepolymer film and a microhole-arrayed silicon template, sandwiching an air gap, to dewet the prepolymer film into a curved air-liquid interface. At or beyond a critical voltage, the curved prepolymer can be pulled quickly into contact with the protrusive underside of the silicon template. Contact of the prepolymer with the template silicon template. Contact ot the prepolymer with the template can be detected by monitoring the leaky current in the polymer, followed by a UV curing of the prepolymer. Finally, by separating the mold from the solidified polymer, a concave MLA is obtained. The curvature of the MLA can be well-defined simply by changing the air gap between the mold and prepolymer film. Besides, the dewetting strategy results in a much smaller adhesion area between the mold and solidified polymer structures, which allows for easy separation of the mold from the MLA in a large-area operation.
机译:本文提出了一种基于经济可固化的紫外线固化预聚物的电模板去湿的经济方法,用于制造高质量和高密度的凹面微透镜阵列(MLA)。在我们的策略中,将电压施加到电极对上,该电极对由涂有可紫外线固化的预聚物膜的导电基材和微孔阵列的硅模板(夹有气隙)组成,以将预聚物膜润湿成弯曲的气液界面。在临界电压或超过临界电压时,可以将弯曲的预聚物快速拉出,使其与硅模板的突出底面接触。预聚物与模板硅模板的接触。预聚物与模板的接触可以通过监测聚合物中的泄漏电流,然后对预聚物进行UV固化来检测。最后,通过将模具与固化的聚合物分离,可以获得凹形的MLA。只需更改模具和预聚物薄膜之间的气隙,就可以很好地定义MLA的曲率。另外,去湿策略导致模具和固化的聚合物结构之间的粘合面积小得多,这使得在大面积操作中易于将模具与MLA分离。

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