Fabrication of Porous Polyimide Membrane with Through‐Hole via Multiple Solvent Displacement Method
Autor: | Patchiya Phanthong, Tsubasa Wakabayashi, Sho Hirai, Shigeru Yao |
---|---|
Rok vydání: | 2021 |
Předmět: |
Materials science
Fabrication Morphology (linguistics) Full Paper 010405 organic chemistry porous polyimide membranes technology industry and agriculture General Chemistry Full Papers 010402 general chemistry 01 natural sciences pore size control 0104 chemical sciences Solvent Chemistry Membrane Chemical engineering Air permeability specific surface through-hole Nanofiltration multiple solvent displacement method Porosity QD1-999 nonsolvent induced phase separation Polyimide |
Zdroj: | ChemistryOpen ChemistryOpen, Vol 10, Iss 3, Pp 352-359 (2021) |
ISSN: | 2191-1363 |
DOI: | 10.1002/open.202000299 |
Popis: | Porous polyimide (PI) membranes are widely used in separation processes because of their excellent thermal and mechanical properties. However, the applications of porous PI membranes are limited in the nanofiltration range. In this study, porous PI membranes with through‐holes have been successfully fabricated by the novel multiple solvent displacement method. This new method requires only a porous polyamic acid (PAA) membrane, which was prepared by immersing PAA film in N‐methylpyrrolidoneebk; (NMP) prior to immersing it in a mixed solvent consisting of NMP and a poor solvent, followed by immersion only in poor solvent. The pore size, morphology, porosity, and air permeability demonstrated that the fabricated PI membranes had a uniformly porous structure with through‐holes over their surface. This new method enabled control of pore size (3–11 μm) by selecting a suitable poor solvent. This multiple solvent displacement method is highly versatile and promising for the fabrication of porous PI membranes. Porous polyimide (PI) membranes were fabricated by the novel multiple solvent displacement method. This method required simple process by only immersing the polyamic acid film in multiple solvents prior to imidization. Fabricated polyimide membranes had a uniform porous structure with through‐holes and controllable pore sizes ranging from 3 to 11 μm by selecting a suitable poor solvent. |
Databáze: | OpenAIRE |
Externí odkaz: | |
Nepřihlášeným uživatelům se plný text nezobrazuje | K zobrazení výsledku je třeba se přihlásit. |