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Fabrication of nanotextured porous polymer using porous silicon scaffolds

机译:使用多孔硅支架制备纳米织构的多孔聚合物

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摘要

Porous polymers are gaining increased interest in several areas due to their large surface area and unique physiochemical properties. Porous polymers are conventionally manufactured using specific processes related to the chemical structure of each polymer. In this paper, we report a generic fabrication process that can be applied to all liquid polymers to texture their outer surfaces with a desired porosity. The process is based on two micromolding steps. Porous silicon (ps) template, fabricated using a xenon difluoride (XeF2) dry etching technique, is used in the first step to form a polymeric complement (pc) of porous silicon. Pc, in turn, is used as template to form the final porous polymer. This leads to a final polymeric structure similar to the porous silicon one. The proposed process offers flexibility in terms of tailoring the texture of the final polymer by simply using porous silicon templates with different pore sizes and configurations. The proposed process was successfully implemented to texture Poly-ethyl hydrosiloxane (PMHS) using porous silicon and Poly-methyl methacrylate (PMMA) scaffolds.
机译:多孔聚合物由于其较大的表面积和独特的理化性质而在多个领域越来越受到关注。多孔聚合物通常使用与每种聚合物的化学结构有关的特定方法制造。在本文中,我们报告了一种通用的制造工艺,该工艺可应用于所有液态聚合物,以使其外表面具有所需的孔隙率。该过程基于两个微成型步骤。第一步,使用二氟化氙(XeF2)干法蚀刻技术制造的多孔硅(ps)模板,以形成多孔硅的聚合物补体(pc)。依次将PC用作模板以形成最终的多孔聚合物。这导致最终的聚合物结构类似于多孔硅。通过简单地使用具有不同孔径和构型的多孔硅模板,所提出的方法在定制最终聚合物的质地方面提供了灵活性。使用多孔硅和聚甲基丙烯酸甲酯(PMMA)支架成功实施了拟议的工艺,以织构聚乙基氢硅氧烷(PMHS)。

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