Please use this identifier to cite or link to this item: http://dr.iiserpune.ac.in:8080/xmlui/handle/123456789/6154
Title: Efficient Capture of Trace Acetylene by an Ultramicroporous Metal–Organic Framework with Purine Binding Sites
Authors: SHARMA, SHIVANI
Mukherjee, Soumya
DESAI, AAMOD V.
Vandichel, Matthias
DAM, GOURAB K.
JADHAV, ASHWINI
Kociok-Köhn, Gabriele
Zaworotko, Michael J.
GHOSH, SUJIT K.
Dept. of Chemistry
Keywords: Carbon-Dioxide
Adsorptive Separation
Ethylene Purification
Coordination Networks
Selective Adsorption
Porous Materials
CO2
Ethane
Thermodynamics
C2H2/Co2
2021-AUG-WEEK1
TOC-AUG-2021
2021
Issue Date: Jul-2021
Publisher: American Chemical Society
Citation: Chemistry of Materials, 33(14), 5800–5808.
Abstract: Efficient separation of acetylene (C2H2) from its byproducts, especially CO2, is difficult because of their similar physicochemical properties, including molecular dimensions and boiling point. Herein, we demonstrate trace C2H2 removal from C2H2/CO2 mixtures enabled by a new ultramicroporous metal–organic framework (MOF) adsorbent, IPM-101, which features an optimal pore size of 4 Å (close to the kinetic diameter of C2H2, 3.3 Å) and one-dimensional channels lined by Lewis basic purine groups. Single-component gas adsorption isotherms revealed a clear affinity toward C2H2 versus CO2 at low pressures with a substantial C2H2 uptake of 0.9 mmol g–1 at 3000 ppm and 298 K. Dynamic column breakthrough experiments revealed separation of C2H2 from 1:1 and 1:99 v/v C2H2/CO2 mixtures. IPM-101 exhibits one of the highest dynamic separation selectivity (αAC) values yet reported, 22.5 for 1:1 C2H2/CO2. Computational simulations indicated that the purine moiety was key to the strong C2H2 selectivity thanks to C2H2 selective N···HC≡CH interactions.
URI: http://dr.iiserpune.ac.in:8080/xmlui/handle/123456789/6154
https://doi.org/10.1021/acs.chemmater.1c01723
ISSN: 0897-4756
1520-5002
Appears in Collections:JOURNAL ARTICLES

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