Polymers of intrinsic microporosity with internal dihedral lock for efficient gas separation

Cong Yu , Yu Wang , Yanfang Xia , Shuangjiang Luo , Xiaohua Ma , Ben Hang Yin , Xinbo Wang
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Abstract

Polymers of intrinsic microporosity (PIMs) stand out as promising membrane materials with exceptional separation performance. In this study, we crafted a highly efficient gas separation membrane using an emerging material, called cyclohexyl-fused spirobiindane-based PIM (CCS-PIM). The CCS-PIM features a robust and rigid microporous structure with a high specific surface area (SBET ​= ​704.6 ​m2/g), exhibiting excellent CO2-selective adsorption capacity. The CO2 adsorption uptake is 0.78 ​mmol/g at 273 ​K and 0.15 ​bar, leading to IAST selectivity of 25.2 for CO2/N2 (15/85 v/v) and 16.7 for CO2/CH4 (50/50 v/v) at 298 ​K. The precisely tuned pore size of the CCS-PIM membrane leads to an enhanced molecular sieving effect, showcasing superior selectivity across various gas pair separations. It demonstrates an O2/N2 selectivity of 6.03 and a CO2/CH4 selectivity of 26.1, surpassing the 2008 Robeson upper bounds. This study suggests a strategic method to improve gas separation efficiency by customizing a locked PIM structure with precise molecular sieving through the insertion of variously sized rings.

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用于高效气体分离的具有内部二面锁链的固有微孔聚合物
具有固有微孔的聚合物(PIMs)是一种很有前途的膜材料,具有优异的分离性能。在本研究中,我们使用一种名为环己基熔融螺双茚满基 PIM(CCS-PIM)的新兴材料制作了一种高效气体分离膜。CCS-PIM 具有坚固刚性的微孔结构和高比表面积(SBET = 704.6 m2/g),表现出卓越的二氧化碳选择性吸附能力。在 273 K 和 0.15 bar 条件下,二氧化碳吸附量为 0.78 mmol/g,因此在 298 K 条件下,CO2/N2(15/85 v/v)的 IAST 选择性为 25.2,CO2/CH4(50/50 v/v)的 IAST 选择性为 16.7。CCS-PIM 膜的孔径经过精确调整,从而增强了分子筛分效果,在各种气对分离中显示出卓越的选择性。它的 O2/N2 选择性为 6.03,CO2/CH4 选择性为 26.1,超过了 2008 年 Robeson 规定的上限。这项研究提出了一种提高气体分离效率的战略方法,即通过插入不同大小的环,定制具有精确分子筛分功能的锁定 PIM 结构。
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