选择性
聚合物
吸附
膜
磁导率
体积热力学
化学工程
化学
胺气处理
材料科学
高分子化学
气体分离
组合化学
有机化学
催化作用
吸附
热力学
工程类
生物化学
物理
作者
Katherine Mizrahi Rodriguez,Sharon Lin,Albert X. Wu,Gang Han,Justin J. Teesdale,Cara M. Doherty,Zachary P. Smith
标识
DOI:10.1002/anie.202012441
摘要
Abstract Gas‐separation polymer membranes display a characteristic permeability–selectivity trade‐off that has limited their industrial use. The most comprehensive approach to improving performance is to devise strategies that simultaneously increase fractional free volume, narrow free volume distribution, and enhance sorption selectivity, but generalizable methods for such approaches are exceedingly rare. Here, we present an in situ crosslinking and solid‐state deprotection method to access previously inaccessible sorption and diffusion characteristics in amine‐functionalized polymers of intrinsic microporosity. Free volume element (FVE) size can be increased while preserving a narrow FVE distribution, enabling below‐upper bound polymers to surpass the H 2 /N 2 , H 2 /CH 4 , and O 2 /N 2 upper bounds and improving CO 2 ‐based selectivities by 200 %. This approach can transform polymers into chemical analogues with improved performance, thereby overcoming traditional permeability–selectivity trade‐offs.
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