A Microporous Metal‐Organic Framework with Unique Aromatic Pore Surfaces for High Performance C2H6/C2H4 Separation

Author:

Ye Yingxiang12,Xie Yi3,Shi Yanshu3,Gong Lingshan12,Phipps Joshua1,Al‐Enizi Abdullah M.4ORCID,Nafady Ayman4ORCID,Chen Banglin2ORCID,Ma Shengqian1ORCID

Affiliation:

1. Department of Chemistry University of North Texas 1508 W Mulberry St. Denton TX 76201 USA

2. College of Chemistry and Materials Science Fujian Normal University Fuzhou 350007 China

3. Department of Chemistry University of Texas at San Antonio One UTSA Circle San Antonio TX 78249 USA

4. Department of Chemistry College of Science King Saud University Riyadh 11451 Saudi Arabia

Abstract

AbstractDeveloping adsorptive separation processes based on C2H6‐selective sorbents to replace energy‐intensive cryogenic distillation is a promising alternative for C2H4 purification from C2H4/C2H6 mixtures, which however remains challenging. During our studies on two isostructural metal–organic frameworks (Ni‐MOF 1 and Ni‐MOF 2), we found that Ni‐MOF 2 exhibited significantly higher performance for C2H6/C2H4 separation than Ni‐MOF‐1, as clearly established by gas sorption isotherms and breakthrough experiments. Density‐Functional Theory (DFT) studies showed that the unblocked unique aromatic pore surfaces within Ni‐MOF 2 induce more and stronger C−H⋅⋅⋅π with C2H6 over C2H4 while the suitable pore spaces enforce its high C2H6 uptake capacity, featuring Ni‐MOF 2 as one of the best porous materials for this very important gas separation. It generates 12 L kg−1 of polymer‐grade C2H4 product from equimolar C2H6/C2H4 mixtures at ambient conditions.

Funder

Welch Foundation

King Saud University

Publisher

Wiley

Subject

General Chemistry,Catalysis

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