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Influence of vacuum on the formation of porous polymer films via water droplets templating

机译:真空对通过水滴模板形成多孔聚合物膜的影响

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We report on the formation of ordered arrays of micron-sized holes on the surface of polymer films cast from volatile solvents in the presence of humidity in vacuum. A lower pressure in a vacuum chamber can accelerate the evaporation of solvent in the same way as the accelerating action of the air flowing across the solvent surface and results in the formation of porous films via the “breath figure” templating method. This vacuum technique has a good reproductiveness for the fabrication of the well-ordered porous films in a large area. It is very controllable to prepare the porous films in a vacuum chamber via controlling the vacuum level. The pore sizes can be easily tuned from 5.6 to 17.1 μm by changing the vacuum level. The mechanism for the formation of the porous films in vacuum was also discussed. The polymer films with ordered porous structure and tunable pore sizes have potential applications in many areas such as microarrays and as scaffolds for tissue engineering.
机译:我们报告了在真空中存在湿气的情况下,由挥发性溶剂流延的聚合物薄膜表面形成的微米级孔的有序阵列的形成。真空室中的较低压力可以与流过溶剂表面的空气的加速作用相同的方式加速溶剂的蒸发,并通过“呼吸图”模板方法形成多孔膜。该真空技术对于大面积制造有序的多孔膜具有良好的繁殖性。通过控制真空度在真空室中制备多孔膜是非常可控制的。通过更改真空度,可以轻松将孔径从5.6调整到17.1μm。还讨论了在真空中形成多孔膜的机理。具有有序多孔结构和可调孔径的聚合物薄膜在许多领域都有潜在的应用,例如微阵列和组织工程的支架。

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