Pore Space Partition within a Metal–Organic Framework for Highly Efficient C2H2/CO2 Separation

Wei Zhou, Banglin Chen, Rui‐Biao Lin, Rajamani Krishna, Shengchang Xiang, Zhangjing Zhang, Yingxiang Ye, Zhenlin Ma, Quanjie Lin
2019-02-22

SCID:  54.1/zr3vg6y9
The pore space partition (PSP) approach has been employed to realize a novel porous MOF ( FJU-90 ) with dual functionalities for the challenging C 2 H 2 /CO 2 separation under ambient conditions. By virtue of a triangular ligand (Tripp = 2,4,6-tris(4-pyridyl)pyridine), the cylindrical channels in the original FJU-88 have been partitioned into uniformly interconnected pore cavities, leading to the dramatically reduced pore apertures from 12.0 × 9.4 to 5.4 × 5.1 Å 2 . Narrowing down the pore sizes, the resulting activated FJU-90a takes up a very large amount of C 2 H 2 (180 cm 3 g –1 ) but much less of CO 2 (103 cm 3 g –1 ) at 298 K and 1 bar, demonstrating it to be the best porous MOF material for this C 2 H 2 /CO 2 (50%:50%) separation in terms of the C 2 H 2 gravimetric productivity. IAST calculations, molecular modeling studies, and simulated and experimental breakthrough experiments comprehensively demonstrate that the pore space partition strategy is a very powerful approach to constructing MOFs with dual functionality for challenging gas separation.
Publication Details
Publication Date
2019-02-22
Journal
Publisher
ISSN
Access Type
Author Information
Authors
Wei Zhou
Banglin Chen
Rui‐Biao Lin
Rajamani Krishna
Shengchang Xiang
Zhangjing Zhang
Yingxiang Ye
Zhenlin Ma
Quanjie Lin
Explore More Research
Use the citation graph to discover related papers and expand your research horizons.
Click any node to explore
Download PDF
100%