Please use this identifier to cite or link to this item: https://libjncir.jncasr.ac.in/xmlui/handle/10572/2429
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dc.contributor.authorHaldar, Ritesh
dc.contributor.authorReddy, Sandeep K.
dc.contributor.authorSuresh, Venkata M.
dc.contributor.authorMohapatra, Sudip
dc.contributor.authorBalasubramanian, Sundaram
dc.contributor.authorMaji, Tapas Kumar
dc.date.accessioned2017-02-21T07:02:08Z-
dc.date.available2017-02-21T07:02:08Z-
dc.date.issued2014
dc.identifier.citationHaldar, R; Reddy, SK; Suresh, VM; Mohapatra, S; Balasubramanian, S; Maji, TK, Flexible and Rigid Amine-Functionalized Microporous Frameworks Based on Different Secondary Building Units: Supramolecular Isomerism, Selective CO2 Capture, and Catalysis. Chemistry-A European Journal 2014, 20 (15) 4347-4356, http://dx.doi.org/10.1002/chem.201303610en_US
dc.identifier.citationChemistry-A European Journalen_US
dc.identifier.citation20en_US
dc.identifier.citation15en_US
dc.identifier.issn0947-6539
dc.identifier.urihttps://libjncir.jncasr.ac.in/xmlui/10572/2429-
dc.descriptionRestricted Accessen_US
dc.description.abstractWe report the synthesis, structural characterization, and porous properties of two isomeric supramolecular complexes of ([Cd(NH(2)bdc)(bphz)(0.5)]DMFH2O}(n) (NH(2)bdc=2-aminobenzenedicarboxylic acid, bphz=1,2-bis(4-pyridylmethylene)hydrazine) composed of a mixed-ligand system. The first isomer, with a paddle-wheel-type Cd-2(COO)(4) secondary building unit (SBU), is flexible in nature, whereas the other isomer has a rigid framework based on a -oxo-bridged Cd-2(-OCO)(2) SBU. Both frameworks are two-fold interpenetrated and the pore surface is decorated with pendant -NH2 and NN functional groups. Both the frameworks are nonporous to N-2, revealed by the typeII adsorption profiles. However, at 195K, the first isomer shows an unusual double-step hysteretic CO2 adsorption profile, whereas the second isomer shows a typical typeI CO2 profile. Moreover, at 195K, both frameworks show excellent selectivity for CO2 among other gases (N-2, O-2, H-2, and Ar), which has been correlated to the specific interaction of CO2 with the -NH2 and NN functionalized pore surface. DFT calculations for the oxo-bridged isomer unveiled that the -NH2 group is the primary binding site for CO2. The high heat of CO2 adsorption (H-ads=37.7kJmol(-1)) in the oxo-bridged isomer is realized by NH2CO2/aromatic CO2 and cooperative CO2CO2 interactions. Further, postsynthetic modification of the -NH2 group into -NHCOCH3 in the second isomer leads to a reduced CO2 uptake with lower binding energy, which establishes the critical role of the -NH2 group for CO2 capture. The presence of basic -NH2 sites in the oxo-bridged isomer was further exploited for efficient catalytic activity in a Knoevenagel condensation reaction.en_US
dc.description.uri1521-3765en_US
dc.description.urihttp://dx.doi.org/10.1002/chem.201303610en_US
dc.language.isoEnglishen_US
dc.publisherWiley-V C H Verlag Gmbhen_US
dc.rights@Wiley-V C H Verlag Gmbh, 2014en_US
dc.subjectChemistryen_US
dc.subjectAdsorptionen_US
dc.subjectCatenanesen_US
dc.subjectFlexible Frameworken_US
dc.subjectKnoevenagel Condensationen_US
dc.subjectMetal-Organic Frameworksen_US
dc.subjectMetal-Organic Frameworksen_US
dc.subjectCarbon-Dioxide Captureen_US
dc.subjectPorous Coordination Polymeren_US
dc.subjectHigh Gas Sorptionen_US
dc.subjectFlue-Gasen_US
dc.subjectImidazolate Frameworksen_US
dc.subjectSeparation Capacityen_US
dc.subjectMolecular-Dynamicsen_US
dc.subjectMesoporous Silicaen_US
dc.subjectCrystal-Structureen_US
dc.titleFlexible and Rigid Amine-Functionalized Microporous Frameworks Based on Different Secondary Building Units: Supramolecular Isomerism, Selective CO2 Capture, and Catalysisen_US
dc.typeArticleen_US
Appears in Collections:Research Articles (Balasubramanian Sundaram)
Research Articles (Tapas Kumar Maji)

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