| Literature DB >> 33661542 |
Yutong Wang1, Chunlian Hao1, Weidong Fan1, Mingyue Fu1, Xiaokang Wang1, Zhikun Wang1, Lei Zhu1, Yue Li1, Xiaoqing Lu1, Fangna Dai1, Zixi Kang1, Rongming Wang1, Wenyue Guo1, Songqing Hu1, Daofeng Sun1.
Abstract
The separation of ethylene (C2 H4 ) from a mixture of ethane (C2 H6 ), ethylene (C2 H4 ), and acetylene (C2 H2 ) at normal temperature and pressure is a significant challenge. The sieving effect of pores is powerless due to the similar molecular size and kinetic diameter of these molecules. We report a new modification method based on a stable ftw topological Zr-MOF platform (MOF-525). Introduction of a cyclopentadiene cobalt functional group led to new ftw-type MOFs materials (UPC-612 and UPC-613), which increase the host-guest interaction and achieve efficient ethylene purification from the mixture of hydrocarbon gases. The high performance of UPC-612 and UPC-613 for C2 H2 /C2 H4 /C2 H6 separation has been verified by gas sorption isotherms, density functional theory (DFT), and experimentally determined breakthrough curves. This work provides a one-step separation of the ternary gas mixture and can further serve as a blueprint for the design and construction of function-oriented porous structures for such applications.Entities:
Keywords: cobalt; ethylene purification; metal-organic frameworks (MOFs); one-step purification; ternary gas mixture
Year: 2021 PMID: 33661542 DOI: 10.1002/anie.202100782
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336