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Simulation on Pore Formation from Polymer Solution at Surface in Contact with Solid Substrate via Thermally Induced Phase Separation

机译:通过热诱导的相分离在与固体基质接触的聚合物溶液中孔隙形成的模拟

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摘要

The formation of porous structures from polymer solutions at the surface in contact with various solid surfaces via a thermally-induced phase separation (TIPS) process is investigated. The pore formation process at the bulk and the surface of the poly(methyl methacrylate)/cyclohexanol solution is simulated with a model based on the phase field method. When the compatibilities between the polymer-rich phase formed by the phase separation and the solid surface are high or low, surface porosity decreases. In contrast, for the solid surface having similar compatibilities with the polymer and solvent, high surface porosity is achieved. This indicates that the compatibility between the solid surface and polymer solution is important, and that optimal compatibility results in high surface porosity. The knowledge obtained in this work is useful to design the coagulation bath component in the membrane preparation process by TIPS for achieving high surface porosity.
机译:研究了通过热诱导的相分离(提示)工艺的从与各种固体表面接触的聚合物溶液中形成多孔结构。基于相场法的模型模拟了体积体和聚(甲基丙烯酸甲酯)/环己醇溶液的表面的孔形成过程。当通过相分离和固体表面形成的聚合物富相间的相容性高或低,表面孔隙率降低。相反,对于具有与聚合物和溶剂相似的固体表面,实现高表面孔隙率。这表明固体表面和聚合物溶液之间的相容性很重要,并且最佳相容性导致高表面孔隙率。在该工作中获得的知识可用于通过用于实现高表面孔隙的尖端设计膜制备过程中的凝固浴组件。

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