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Patterned Microstructure Fabrication: Polyelectrolyte Complexes vs Polyelectrolyte Multilayers

机译:图案化的微结构制造:聚电解质复合物与聚电解质多层

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摘要

Polyelectrolyte complexes (PEC) are formed by mixing the solutions of oppositely charged polyelectrolytes, which were hitherto deemed “impossible” to process, since they are infusible and brittle when dry. Here, we describe the process of fabricating free-standing micro-patterned PEC films containing array of hollow or filled microchambers by one-step casting with small applied pressure and a PDMS mould. These structures are compared with polyelectrolyte multilayers (PEM) thin films having array of hollow microchambers produced from a layer-by-layer self-assembly of the same polyelectrolytes on the same PDMS moulds. PEM microchambers “cap” and “wall” thickness depend on the number of PEM bilayers, while the “cap” and “wall” of the PEC microchambers can be tuned by varying the applied pressure and the type of patterned mould. The proposed PEC production process omits layering approaches currently employed for PEMs, reducing the production time from ~2 days down to 2 hours. The error-free structured PEC area was found to be significantly larger compared to the currently-employed microcontact printing for PEMs. The sensitivity of PEC chambers towards aqueous environments was found to be higher compared to those composed of PEM.
机译:聚电解质复合物(PEC)是通过混合带相反电荷的聚电解质溶液而形成的,迄今为止,它们被认为“不可能”加工,因为它们在干燥时不熔且易碎。在这里,我们描述了通过单步浇铸,施加小的压力和PDMS模具来制作包含中空或填充微腔阵列的独立式微图案PEC膜的过程。将这些结构与具有中空微腔阵列的聚电解质多层(PEM)薄膜进行比较,该中空微腔室是由相同的聚电解质在相同的PDMS模具上逐层自组装而成的。 PEM微腔的“帽”和“壁”厚度取决于PEM双层的数量,而PEC微腔的“帽”和“壁”可通过改变施加的压力和图案化模具的类型来调整。拟议的PEC生产工艺省去了目前用于PEM的分层方法,从而将生产时间从大约2天减少到2小时。发现与目前使用的PEM微接触印刷相比,无错误的结构化PEC面积要大得多。发现PEC腔室对水性环境的敏感性高于由PEM组成的腔室。

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