Please use this identifier to cite or link to this item: http://hdl.handle.net/10773/19379
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dc.contributor.authorPillai, Renjith S.pt
dc.contributor.authorKhan, Imranpt
dc.contributor.authorTitus, Elbypt
dc.date.accessioned2017-12-07T19:10:45Z-
dc.date.issued2015pt
dc.identifier.issn2214-7853pt
dc.identifier.urihttp://hdl.handle.net/10773/19379-
dc.description.abstractThe shape, interaction and stability of adsorbed C2-hydrocarbon, ethane and ethylene, molecule in a nano-porous cages of zeolite molecular sieves, e.g. Faujsite, were studied by cluster based Density Functional Theory (DFT). The interactions of ethylene and ethane on nano-porous Faujasite with varying size of extra-framework cations, e.g. Li < Na < K < Rb < Cs, have been investigated using generalized gradient approximation (GGA) with PW91 correlation functional. A cluster model was taken from the single crystal data of Faujasite to investigate the interaction between nano-porous zeolite and C2-hydrcarbon. Additionally, ethane and ethylene with naked monovalent cations were optimized using the same PW91 level theory. DFT were employed to get the geometries, Mulliken partial charges and adsorption binding energies for zeolite cluster with varying size of cations. These geometric and energetic data were analyzed with respect to the size of cation. DFT results suggest that if smaller the size of the extra-framework cations stronger will be the hydrocarbon interaction in nano-porous Faujasite even if there would specific interaction. (C) 2015 Published by Elsevier Ltd.pt
dc.language.isoengpt
dc.publisherELSEVIER SCIENCE BVpt
dc.relationinfo:eu-repo/grantAgreement/FCT/5876/147332/PTpt
dc.rightsrestrictedAccesspor
dc.subjectDENSITY-FUNCTIONAL THEORYpt
dc.subjectEXCHANGED MOLECULAR-SIEVESpt
dc.subjectCANONICAL MONTE-CARLOpt
dc.subjectZEOLITE-Xpt
dc.subjectIR SPECTROSCOPYpt
dc.subjectY-ZEOLITESpt
dc.subjectOLEFIN/PARAFFIN SEPARATIONSpt
dc.subjectNEUTRON-DIFFRACTIONpt
dc.subjectBALANCING CATIONSpt
dc.subjectPI-COMPLEXATIONpt
dc.titleC2-Hydrocarbon Adsorption in Nano-porous Faujasite: A DFT Studypt
dc.typearticlept
dc.peerreviewedyespt
ua.distributioninternationalpt
degois.publication.firstPage436pt
degois.publication.issue1pt
degois.publication.lastPage445pt
degois.publication.titleMATERIALS TODAY-PROCEEDINGSpt
degois.publication.volume2pt
dc.date.embargo10000-01-01-
dc.relation.publisherversion10.1016/j.matpr.2015.04.053pt
dc.identifier.doi10.1016/j.matpr.2015.04.053pt
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