渗透
渗透
材料科学
膜
聚合物
溶剂
纳米-
复合材料
化学工程
极限抗拉强度
热稳定性
纳米颗粒
高分子化学
纳米技术
化学
有机化学
生物化学
工程类
作者
Zhaolai Huang,Jiaqi Li,Mengxiao Zhang,Weilin Feng,Chuanjie Fang,Liping Zhu
摘要
Abstract Polymers of intrinsic microporosity (PIMs) are promising materials for membrane separation because their special rigid and contorted structures contribute to high permeability. However, their chain rearrangement to fill excessive free volume makes the permeability stability a tough challenge. In this work, we report on a new use of rutile nano‐TiO 2 to mitigate the physical aging of PIM‐1 (a typical PIM) nanofilms for stable permeability by mixing matrix. It was shown that the PIM‐1 membrane incorporated with nano‐TiO 2 displayed remarkably higher aging resistance with a lower swelling degree in long‐term ethanol soaking, having more stable ethanol permeance with only a 5% decrease after 35 days, lower than 25% of the pure one. The mechanism of anti‐aging was revealed by molecular simulation, thermal, tensile mechanical, and dynamic mechanical analysis. It was found that nano‐TiO 2 had good compatibility with PIM‐1 due to strong coordination interaction, making its uniform dispersion in polymer. Additional solvent permeation channels were also created to increase solvent permeance without compromising solute rejection. Due to the reliable interaction of nano‐TiO 2 , which makes particles serve as physical crosslinking points, the movement of PIM‐1 chains was limited partially to mitigate aging, enabling PIM‐1‐based membranes to have robust solvent permeation.
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