乙炔
化学
选择性
金属有机骨架
气体分离
金属
分离(统计)
多孔性
色谱分离
苯并咪唑
分子
化学工程
吸附
有机化学
膜
催化作用
高效液相色谱法
工程类
机器学习
生物化学
计算机科学
作者
Weidong Fan,Shuai Yuan,Wenjing Wang,Liang Feng,Xiuping Liu,Xiurong Zhang,Xia Wang,Zixi Kang,Fangna Dai,Daqiang Yuan,Daofeng Sun,Hong‐Cai Zhou
摘要
Adsorptive separation of acetylene (C2H2) from carbon dioxide (CO2) promises a practical way to produce high-purity C2H2 required for industrial applications. However, challenges exist in the pore environment engineering of porous materials to recognize two molecules due to their similar molecular sizes and physical properties. Herein, we report a strategy to optimize pore environments of multivariate metal-organic frameworks (MOFs) for efficient C2H2/CO2 separation by tuning metal components, functionalized linkers, and terminal ligands. The optimized material UPC-200(Al)-F-BIM, constructed from Al3+ clusters, fluorine-functionalized organic linkers, and benzimidazole terminal ligands, demonstrated the highest separation efficiency (C2H2/CO2 uptake ratio of 2.6) and highest C2H2 productivity among UPC-200 systems. Experimental and computational studies revealed the contribution of small pore size and polar functional groups on the C2H2/CO2 selectivity and indicated the practical C2H2/CO2 separation of UPC-200(Al)-F-BIM.
科研通智能强力驱动
Strongly Powered by AbleSci AI