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Combining stereolithography and replica molding: On the way to superhydrophobic polymeric devices for photovoltaics

机译:立体光刻与复制模制相结合:应用于光伏的超疏水聚合物器件

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摘要

A strategy combining stereolithography (SL) and soft-lithography for the straightforward fabrication of superhydrophobic bulk devices is reported. Microtextured masters are rapidly prototyped by SL and passivated with a perfluorosilane. Such surface treatment enables the faultless fabrication of negative microstructured polydimethylsiloxane molds ultimately utilized to obtain bulk polymeric micropatterned structures by replica molding. As illustrative proof of concept, this approach is employed in the field of photovoltaics to realize the first example of superhydrophobic luminescent solar concentrators (LSCs) showing superior self-cleaning properties. Following our strategy, a new dye-doped acrylate mixture is developed and optimized to ensure complete wetting of the hollow microstructures present on the mold. By judiciously tailoring the photoinitiator concentration and by implementing a tailored double-step UV-irradiation process, complete UV-photopolymerization is achieved despite the significant thickness of the target samples. The high fidelity replication of the original SL-printed features on the daughter replicas as well as their super water-repellency are successfully demonstrated. The performance of the resulting superhydrophobic LSCs is investigated at varying device dimensions and found to be comparable with state-of-the-art systems. This study demonstrates the potential of high-resolution SL-printing in combination with replication techniques as a versatile tool to reproducibly fabricate microstructured superhydrophobic polymeric bulk devices in a straightforward fashion. (C) 2017 Elsevier Ltd. All rights reserved.
机译:报道了将立体光刻(SL)和软光刻相结合的策略,用于直接制造超疏水体器件。 SL可以快速制作出微纹理的母版原型,并用全氟硅烷钝化。这种表面处理使得能够完美地制造负微结构化的聚二甲基硅氧烷负模,该负微结构的聚二甲基硅氧烷模子最终用于通过复制模制获得块状聚合物微图案结构。作为概念的说明性证明,此方法用于光伏领域,以实现显示出超强自洁特性的超疏水发光太阳能聚光器(LSC)的第一个示例。按照我们的策略,开发并优化了一种新型的染料掺杂丙烯酸酯混合物,以确保完全润湿模具中存在的中空微结构。通过明智地调整光引发剂的浓度并实施定制的双步UV辐照工艺,尽管目标样品的厚度很大,仍可实现完全的UV光聚合。已成功展示了子复制品上原始SL印刷特征的高保真复制及其超疏水性。在不同的器件尺寸下研究了所得超疏水LSC的性能,发现其与最新系统相当。这项研究证明了高分辨率SL印刷与复制技术相结合的潜力,该技术可作为一种通用工具以简单的方式可重复地制造微结构化超疏水性聚合物本体设备。 (C)2017 Elsevier Ltd.保留所有权利。

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