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Computational Study on Metal-Ion-Decorated Prismane Molecules for Selective Adsorption of CO 2 from Flue Gas Mixtures
Selective adsorption of CO from flue gas is extremely significant because of its increasing concentration in air and its deleterious effect on the environment. In this work, we have explored metal-ion-bound prismane molecules for selective CO adsorption from the flue gas mixture. The Ca -bound prism...
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Published in: | ACS omega 2020-12, Vol.5 (48), p.31146-31155 |
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Main Authors: | , |
Format: | Article |
Language: | English |
Citations: | Items that this one cites Items that cite this one |
Online Access: | Get full text |
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Summary: | Selective adsorption of CO
from flue gas is extremely significant because of its increasing concentration in air and its deleterious effect on the environment. In this work, we have explored metal-ion-bound prismane molecules for selective CO
adsorption from the flue gas mixture. The Ca
-bound prismane complex exhibits superior CO
selectivity and adsorption capacity. The calculated binding energy and molecular electrostatic potential (MESP) analysis showed that the rectangular face of prismane binds strongly with metal ions as compared to its triangular face. The CBS-QB3 and density functional theory-based functional M06-2X/6-311+G(d) calculations show that the prismane molecule can bind to one Li
, K
, Mg
, and Ca
ion with favorable binding energy. The metal-ion-bound prismane complexes have been examined for their CO
, N
, and CH
adsorption capacity. Prismane-Ca
can bind with six CO
molecules strongly with an average binding energy of -18.1 kcal/mole as compared to six N
(-12.6) and five CH
(-13.4) gas molecules. The gravimetric density calculated for the CO
-adsorbed prismane-Ca
complex has been found to be 69.1 wt %. The discrete hydrocarbon structure for selective separation of CO
is rare in the literature and can have potential applications for cost-effective CO
capture from the flue gas mixture. |
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ISSN: | 2470-1343 2470-1343 |
DOI: | 10.1021/acsomega.0c04299 |