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Study of ordered macroporous polymer films by templating breath figures.

机译:通过模板呼吸图研究有序的大孔聚合物薄膜。

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Macroporous films with highly ordered pore patterns have many potential applications. Some examples include microstructured electrode surfaces, photonic band gap materials and filters for cell sorting and bio-interfaces. In this dissertation we discuss a "moist-casting" method to prepare hexagonally-ordered macroporous films with pore sizes in the range of sub-micron to several microns, where condensed water droplets ("breath figures") work as templates. Compared with other templating methods, this one is fast and simple. Well-ordered porous films can be obtained in tens of seconds and the pore size can be easily tailored and dynamically controlled by adjusting the casting conditions. More importantly, there is no need to remove the templates; water droplets just evaporate when the casting processes are finished.; This study was carried out with the intention of characterizing the structures, understanding film-formation processes and exploring special properties and possible applications. For the structural characterization, film morphology was studied in detail by normal optical microscopy and laser scanning confocal microscopy (LSCM). Several interesting features have been revealed. Meanwhile, the degree of the order of the porous structures were characterized both in real space via Voronoi diagram and bond-orientational correlation function, and in reciprocal space via Fraunhofer diffraction pattern. To further understand the mechanism, the evaporation of the polymer solutions during the film formation was studied by monitoring their mass over time. Besides, the evolution of breath figures formed on the evaporating polymer solutions was in-situ recorded via a high-speed camera coupled to an optical microscope. Combined with the information on the film structures obtained via LSCM, explanations for some detailed features have been attempted. Wetting property of these films was studied in some detail. The films exhibited "lotus effect", mimicking natural non-wetting surfaces. To improve the solvent stability and mechanical properties of the macroporous films for possible applications, crosslinking of the polymer matrix was tried by heating. Crosslinked structures with hexagonal arrays of cone-like air holes were obtained, which might find use as "micron-sized beakers" for small-quantity analysis.
机译:具有高度有序的孔模式的大孔膜具有许多潜在的应用。一些示例包括微结构化的电极表面,光子带隙材料以及用于细胞分选和生物界面的过滤器。在本文中,我们讨论了一种“湿式浇铸”方法,以制备孔径在亚微米至几微米范围内的六角形大孔薄膜,其中凝结的水滴(“呼吸图”)用作模板。与其他模板方法相比,该方法既快速又简单。可以在数十秒内获得井井有条的多孔膜,并且可以通过调整流延条件轻松调整孔径并动态控制孔径。更重要的是,无需删除模板。铸造过程完成后,水滴才蒸发。进行这项研究的目的是表征结构,了解膜形成过程并探索特殊性能和可能的应用。为了进行结构表征,通过常规光学显微镜和激光扫描共聚焦显微镜(LSCM)详细研究了膜的形态。揭示了几个有趣的功能。同时,通过Voronoi图和键向相关函数,在真实空间中以及通过弗劳恩霍夫衍射图谱在倒易空间中,表征了多孔结构的有序度。为了进一步理解机理,通过监测随时间变化的质量来研究成膜过程中聚合物溶液的蒸发。此外,通过耦合到光学显微镜的高速照相机原位记录了在蒸发的聚合物溶液上形成的呼吸图的演变。结合通过LSCM获得的有关膜结构的信息,尝试了一些详细特征的解释。对这些膜的润湿性进行了详细的研究。这些膜表现出“莲花效应”,模仿了自然的非润湿表面。为了改善大孔膜的溶剂稳​​定性和机械性能以用于可能的应用,尝试通过加热使聚合物基质交联。获得具有六边形圆锥形气孔阵列的交联结构,该结构可能会用作小量分析的“微米级烧杯”。

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