选择性
吸附
位阻效应
吸附
等结构
化学
聚合物
选择性吸附
多孔性
材料科学
化学工程
气体分离
物理化学
有机化学
膜
晶体结构
催化作用
工程类
生物化学
作者
Yifan Gu,Jia‐Jia Zheng,Ken‐ichi Otake,Mohana Shivanna,Shigeyoshi Sakaki,Haruka Yoshino,Masaaki Ohba,Shogo Kawaguchi,Ying Wang,Fengting Li,Susumu Kitagawa
标识
DOI:10.1002/anie.202016673
摘要
Controlling gas sorption by simple pore modification is important in molecular recognition and industrial separation processes. In particular, it is challenging to realize the inverse selectivity, which reduces the adsorption of a high-affinity gas and increases the adsorption of a low-affinity gas. Herein, an "opposite action" strategy is demonstrated for boosting CO2 /C2 H2 selectivity in porous coordination polymers (PCPs). A precise steric design of channel pores using an amino group as an additional interacting site enabled the synergetic increase in CO2 adsorption while suppressing the C2 H2 adsorption. Based on this strategy, two new ultramicroporous PCP physisorbents that are isostructural were synthesised. They exhibited the highest CO2 uptake and CO2 /C2 H2 volume uptake ratio at 298 K. Origin of this specific selectivity was verified by detailed density functional theory calculations. The breakthrough separation performances with remarkable stability and recyclability of both the PCPs render them relevant materials for C2 H2 purification from CO2 /C2 H2 mixtures.
科研通智能强力驱动
Strongly Powered by AbleSci AI