| dc.contributor.author | 
MAITY, RAHUL | 
en_US | 
| dc.contributor.author | 
Chakraborty, Debanjan | 
en_US | 
| dc.contributor.author | 
NANDI, SHYAMAPADA | 
en_US | 
| dc.contributor.author | 
Rinku, Kushwaha | 
en_US | 
| dc.contributor.author | 
VAIDHYANATHAN, RAMANATHAN | 
en_US | 
| dc.date.accessioned | 
2018-11-19T06:47:28Z | 
 | 
| dc.date.available | 
2018-11-19T06:47:28Z | 
 | 
| dc.date.issued | 
2018-10 | 
en_US | 
| dc.identifier.citation | 
Crystengcomm, Vol.20(39). | 
en_US | 
| dc.identifier.issn | 
1466-8033 | 
en_US | 
| dc.identifier.uri | 
http://dr.iiserpune.ac.in:8080/xmlui/handle/123456789/1348 | 
 | 
| dc.identifier.uri | 
https://doi.org/10.1039/c8ce00752g | 
en_US | 
| dc.description.abstract | 
A microporous mixed-ligand-based metal–organic framework has been synthesized using two different dicarboxylic acid-based ligands (4,4′-biphenyldicarboxylate (BPDC) and imino diacetate (IMDA)) and two different metal ions (Ce3+ and Na+), namely Ce3Na3(BPDC)3(IMDA)3·(DMF)2(H2O)9. The framework built from Ce–Na–carboxylate layers and BPDC pillars consists of 2D slit-shaped pores occupied by extra-framework Na+ ions. The desolvated framework is permanently porous with a BET surface area of ∼771 m2 g−1 and displays moderate CO2 uptake of 2.0 mmol g−1 with a CO2/N2 selectivity (S) of 68 at room temperature and 1 bar. A modest heat of adsorption (23 kJ mol−1) and smooth diffusion kinetics are observed, as reflected in the facile CO2 cycling. Using GCMC methods, the CO2 adsorption isotherm at 298 K was simulated, which matches the experimental isotherm well. The CO2 positions observed from the simulations showed that Na+ ions in the channels serve as favorable adsorption sites for the oxygen atoms in CO2 pointing toward the Na+ ions (O[double bond, length as m-dash]C[double bond, length as m-dash]O⋯Na+ = 3.34–5.87 Å), while some CO2 molecules sit flat on the phenyl rings of the BPDC at a CO2⋯centroid distance of 3.6–3.7 Å. | 
en_US | 
| dc.language.iso | 
en | 
en_US | 
| dc.publisher | 
Royal Society of Chemistry | 
en_US | 
| dc.subject | 
Carbon-Dioxide Capture | 
en_US | 
| dc.subject | 
Zeolitic Imidazolate Frameworks | 
en_US | 
| dc.subject | 
Humid Conditions | 
en_US | 
| dc.subject | 
Gas Sorption | 
en_US | 
| dc.subject | 
Cation-Exchange | 
en_US | 
| dc.subject | 
Flue-Gas | 
en_US | 
| dc.subject | 
Sites | 
en_US | 
| dc.subject | 
Adsorption | 
en_US | 
| dc.subject | 
Separation | 
en_US | 
| dc.subject | 
TOC-NOV-2018 | 
en_US | 
| dc.subject | 
2018 | 
en_US | 
| dc.title | 
Microporous mixed-metal mixed-ligand metal organic framework for selective CO2 capture | 
en_US | 
| dc.type | 
Article | 
en_US | 
| dc.contributor.department | 
Dept. of Chemistry | 
en_US | 
| dc.identifier.sourcetitle | 
Crystengcomm | 
en_US | 
| dc.publication.originofpublisher | 
Foreign | 
en_US |