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首页> 外文期刊>ACS applied materials & interfaces >Micropatterned Polymer Films by Vapor-Induced Phase Separation Using Permeable Molds
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Micropatterned Polymer Films by Vapor-Induced Phase Separation Using Permeable Molds

机译:使用渗透性模具的气相诱导相分离制备微图案化聚合物薄膜

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摘要

Microstructured polymeric films are fabricated by a novel replication method. A polymer solution is applied and contained between two substrates, of which at least one is a patterned PDMS mold. The ensemble is then put in an atmosphere containing water vapor, which diffuses through the PDMS. The absorption of water into the polymer solution causes the precipitation (phase separation) of the polymer while in contact with the microstructured molds. The thickness of the PDMS slab can be exploited to tune the water vapor transport and hence the phase separation kinetics and resulting polymer morphology. Removal of excess polymer solution from between two PDMS slabs, followed by vapor induced phase separation, can also result in microperforated polymer films with great control over the dimensions.
机译:微结构化聚合物薄膜是通过一种新颖的复制方法制成的。将聚合物溶液施加并包含在两个基材之间,其中至少一个是带图案的PDMS模具。然后将该集合放到包含水蒸气的气氛中,该水蒸气通过PDMS扩散。在与微结构模具接触的同时,水吸收到聚合物溶液中会导致聚合物沉淀(相分离)。可以利用PDMS平板的厚度来调节水蒸气的输送,从而调节相分离动力学和所得的聚合物形态。从两个PDMS平板之间去除多余的聚合物溶液,然后进行蒸汽诱导的相分离,也可以导致对尺寸进行严格控制的微穿孔聚合物薄膜。

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