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A novel method for controlling the surface morphology of polymeric membranes

机译:控制聚合物膜表面形态的新方法

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It was found that, by the addition of appropriate hydrophilic nonsolvent in the hydrophobic polymer solution, hydrophobic polymeric membranes with 'cellular surface' structure can be fabricated. 'Cellular surface' is to denote the structure of the membranes having surface pores with a polygonal (nearly hexagonal) pattern. In the present work, the formation mechanism of the 'cellular surface' structure was investigated by visualizing the change on the surface of casting solution during membrane formation. When the hydrophobic polymer solution containing hydrophilic additives was exposed to air containing water vapor, the water vapor was drawn onto the casting solution and resulted in nucleation of emulsion drops spontaneously. The nuclei of emulsion drops grew, coalesced, and ended up with the cellular surface pores when the polymer was precipitated. With the knowledge of the formation mechanism of surface pores, the size surface pores can be tailored by controlling the growth of the nuclei of emulsion drops, either by adjusting the amount of hydrophilic additives or by altering the time period, allowing the nuclei to grow.
机译:已经发现,通过在疏水性聚合物溶液中添加适当的亲水性非溶剂,可以制造具有“细胞表面”结构的疏水性聚合物膜。 “细胞表面”是指具有表面孔的膜的结构,该表面孔具有多边形(接近六边形)的图案。在本工作中,通过可视化膜形成过程中流延溶液表面的变化来研究“细胞表面”结构的形成机理。当将含有亲水性添加剂的疏水性聚合物溶液暴露于含有水蒸气的空气中时,水蒸气被吸引到流延溶液上,并导致乳液滴的自发成核。当聚合物沉淀时,乳液滴的核长大,聚结并最终带有细胞表面孔。了解了表面孔的形成机理后,可以通过控制乳液滴核的生长来调整表面孔的大小,方法是调节亲水性添加剂的量或更改时间,以允许核生长。

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